by

7. Output
Terminal output

p r o g r a m I S O _ 1 9 9 0 5 _ 1 w32 version 00.11
———————————— at 18:25:20 on 22-JUL-2025
jackup leg penetration assessment during preload according to ISO 19905-1 (2016)
(c) S.Kay Consultant, Leiderdorp, The Netherlands.
Please read the ISO_19905_1 Users Manual [ref SKA/MAN/001]
and the ISO_19905_1 FAQ File [ref SKA/FAQ/001].

97.0

out_sp_pen_sub: PTS>PTS>PTS>PTS>SQC
4.10 4.20 1.60 1.70 0.100 GSS
4.20 5.00 1.70 2.50 0.800 PTS>PTS>PTS>PTS>GSS
5.00 5.50 2.50 3.00 0.500 PTS>PTS>PTS>GSS
5.50 6.30 3.00 3.80 0.800 PTS>PTS>GSS
6.30 6.90 3.80 4.40 0.600 PTS>GSS
6.90 7.40 4.40 4.90 0.500 GSS
7.40 8.60 4.90 6.10 1.20 PTC>PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
8.60 8.80 6.10 6.30 0.200 PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
8.80 9.10 6.30 6.60 0.300 PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
9.10 9.50 6.60 7.00 0.400 PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
9.50 9.90 7.00 7.40 0.400 PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
9.90 10.4 7.40 7.90 0.500 PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
10.4 11.1 7.90 8.60 0.700 PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
11.1 11.7 8.60 9.20 0.600 PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
11.7 12.0 9.20 9.50 0.300 PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
12.0 14.0 9.50 11.5 2.00 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
14.0 15.3 11.5 12.8 1.30 PTS>PTS>PTS>PTS>PTC>PTS>GSC
15.3 16.8 12.8 14.3 1.50 PTS>PTS>PTS>PTC>PTS>GSC
16.8 17.5 14.3 15.0 0.700 PTS>PTS>PTC>PTS>GSC
17.5 18.0 15.0 15.5 0.500 PTS>PTC>PTS>GSC
18.0 18.5 15.5 16.0 0.500 PTC>PTS>GSC
18.5 19.1 16.0 16.6 0.600 PTS>GSC
19.1 22.9 16.6 20.4 3.80 GSC
22.9 24.0 20.4 21.5 1.10 PTC>GSC
24.0 25.0 21.5 22.5 1.00 GSC
25.0 26.2 22.5 23.7 1.20 PTC>GSC
26.2 33.4 23.7 30.9 7.20 GSC
33.4 33.5 30.9 31.0 0.100 PTC>SQC
33.5 33.6 31.0 31.1 0.100 GSC
33.6 33.7 31.1 31.2 0.100 PTC>SQC
33.7 33.8 31.2 31.3 0.100 GSC
33.8 33.9 31.3 31.4 0.100 PTC>SQC
33.9 34.1 31.4 31.6 0.200 GSC
34.1 34.2 31.6 31.7 0.100 PTC>SQC
34.2 34.3 31.7 31.8 0.100 GSC
34.3 36.3 31.8 33.8 2.00 SQC
36.3 38.5 33.8 36.0 2.20 PTC>GSC
38.5 40.2 36.0 37.7 1.70 GSC
——————————————————————-
from to from to thickness
z_tip z_tip D D T Qv_fmode
[m] [m] [m] [m] [m] [-]
——————————————————————-

iso_19905_1: nlines_errors : 0
iso_19905_1: nlines_warnings: 9

WARNING. gmdata: number of soil layers NUMSL > 20 [?simplify ground model].
WARNING. gmdata: soil layer # 1; BDEN=10.00 kN/m^3 is inconsistent with PHI=25.10 degrees.
WARNING. gmdata: soil layer # 2; BDEN=9.50 kN/m^3 is inconsistent with PHI=27.70 degrees.
WARNING. gmdata: soil layer # 3; BDEN=9.50 kN/m^3 is inconsistent with PHI=28.90 degrees.
WARNING. gmdata: soil layer # 7; BDEN=9.50 kN/m^3 is inconsistent with PHI=26.30 degrees.
WARNING. gmdata: soil layer # 8; SU_TOP, SIGV=38.15 kPa; PSI=SU/SIGV=5.29 is outside typical range [0.15 – 4].
WARNING. spfdat: spudcan volume V_SPUDCAN=551 m^3 is outside typical range [30 – 500].
WARNING. spfdat: maximum spudcan preload P_SPUD=221000.00 kN is outside typical range [10e3 – 100e3].
WARNING. spfdat: number of soil layers NUMSL > 10 in top 1.5B [?simplify ground model].

z_tip_penetration [m]: 2.28
out_sp_pen_sub: END — >

input file: “JOB.I01”
output file: “JOB.O01”
iso_19905_1: normal program end

Output file contents

p r o g r a m I S O _ 1 9 9 0 5 _ 1 w32 version 00.11
———————————— at 18:25:20 on 22-JUL-2025
jackup leg penetration assessment during preload according to ISO 19905-1 (2016)
(c) S.Kay Consultant, Leiderdorp, The Netherlands.
Please read the ISO_19905_1 Users Manual [ref SKA/MAN/001]
and the ISO_19905_1 FAQ File [ref SKA/FAQ/001].

pidata:

gmdata:

spfdat:

ssidat:

resdat:

s__out:

spudcan_mat_X_sub: sp_H sp_B
> [m] [m]
1.70 0.00
17.2 2.50
0.00 6.84
spudcan_mat_X_sub: END — >

D_B_eq_sub: < — BEGIN
D [m]: 0.500
> B_eq [m]: 17.2
D_B_eq_sub: END — >

sp_beta_fun: < — BEGIN
sp_beta [rad]: 2.52
> sp_beta/deg [deg]: 144.
sp_beta_fun: END — >

gamma_sub_av [kN/m^3]: 9.80
A [m^2]: 232.
H_cav [m]: 0.500
V_spud [m^3]: 215.
V_D [m^3]: 215.
W_BF = gamma_sub_av [ A (D – H_cav) – (V_spud – V_D ) ]
> W_BF [kN]: 0.1000000E-02
W_BF_fun: END — >

Qv_Dpt_sub: < — BEGIN
< D [m]: 0.500
< B_eq [m]: 17.2

Q_ub_sub: < — BEGIN
< D [m]: 0.500
< D_pt [m]: 0.500
< B_pt [m]: 17.2

Qv_GSS_fun: < — BEGIN
< D [m]: 0.500
< B_eq [m]: 17.2

phi_av_fun: < — BEGIN
< z1 [m]: 0.500
phi_av [rad]: 0.527
> phi_av/deg [deg]: 30.2
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 9.87
phi_rad_av [rad]: 0.527
phi_rad_av/deg [deg]: 30.2
N_gamma [-]: 16.1
N_q [-]: 38.2
d_gamma [-]: 1.00
d_q [-]: 1.01
p0 [kPa]: 4.90
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.317E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.439E+05
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 360570.1
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 27.7
phi_lay_deg2 [deg]: 27.7
> Q_ub [kN]: 360570.1
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 0.500
< B_pt [m]: 17.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 0.500
< B_pt [m]: 17.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 0.000000
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 0.500
< D_pt [m]: 0.600
< B_pt [m]: 17.3

Qv_GSS_fun: < — BEGIN
< D [m]: 0.600
< B_eq [m]: 17.3

phi_av_fun: < — BEGIN
< z1 [m]: 0.600
phi_av [rad]: 0.528
> phi_av/deg [deg]: 30.2
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 9.92
phi_rad_av [rad]: 0.528
phi_rad_av/deg [deg]: 30.2
N_gamma [-]: 16.3
N_q [-]: 38.6
d_gamma [-]: 1.00
d_q [-]: 1.01
p0 [kPa]: 5.85
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.327E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.534E+05
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 380141.3
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 27.7
phi_lay_deg2 [deg]: 28.9
> Q_ub [kN]: 380141.3
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 0.500
< B_pt [m]: 17.3
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 0.500
< B_pt [m]: 17.3
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 222.4490
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 0.600
< D_pt [m]: 1.50
< B_pt [m]: 17.9

Qv_GSS_fun: < — BEGIN
< D [m]: 1.50
< B_eq [m]: 17.9

phi_av_fun: < — BEGIN
< z1 [m]: 1.50
phi_av [rad]: 0.536
> phi_av/deg [deg]: 30.7
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 10.4
phi_rad_av [rad]: 0.536
phi_rad_av/deg [deg]: 30.7
N_gamma [-]: 17.8
N_q [-]: 41.5
d_gamma [-]: 1.00
d_q [-]: 1.02
p0 [kPa]: 14.4
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.415E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.153E+06
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 568242.5
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 28.9
phi_lay_deg2 [deg]: 32.0
> Q_ub [kN]: 568242.5
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 0.600
< B_pt [m]: 17.9
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 0.600
< B_pt [m]: 17.9
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2143.597
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 1.50
< D_pt [m]: 2.00
< B_pt [m]: 18.2

Qv_GSS_fun: < — BEGIN
< D [m]: 2.00
< B_eq [m]: 18.2

phi_av_fun: < — BEGIN
< z1 [m]: 2.00
phi_av [rad]: 0.524
> phi_av/deg [deg]: 30.0
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 10.5
phi_rad_av [rad]: 0.524
phi_rad_av/deg [deg]: 30.0
N_gamma [-]: 15.6
N_q [-]: 37.5
d_gamma [-]: 1.00
d_q [-]: 1.03
p0 [kPa]: 19.1
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.389E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.192E+06
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 581653.4
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 32.0
phi_lay_deg2 [deg]: 32.0
> Q_ub [kN]: 581653.4
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 1.50
< B_pt [m]: 18.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 1.50
< B_pt [m]: 18.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1235.738
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 2.00
< D_pt [m]: 2.80
< B_pt [m]: 18.7

Qv_GSS_fun: < — BEGIN
< D [m]: 2.80
< B_eq [m]: 18.7

phi_av_fun: < — BEGIN
< z1 [m]: 2.80
phi_av [rad]: 0.498
> phi_av/deg [deg]: 28.5
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 10.4
phi_rad_av [rad]: 0.498
phi_rad_av/deg [deg]: 28.5
N_gamma [-]: 11.7
N_q [-]: 30.1
d_gamma [-]: 1.00
d_q [-]: 1.04
p0 [kPa]: 26.7
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.316E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.232E+06
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 548154.3
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 32.0
phi_lay_deg2 [deg]: 31.3
> Q_ub [kN]: 548154.3
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 2.00
< B_pt [m]: 18.7
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 2.00
< B_pt [m]: 18.7
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2094.757
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 2.80
< D_pt [m]: 3.50
< B_pt [m]: 19.2

Qv_GSS_fun: < — BEGIN
< D [m]: 3.50
< B_eq [m]: 19.2

phi_av_fun: < — BEGIN
< z1 [m]: 3.50
phi_av [rad]: 0.459
> phi_av/deg [deg]: 26.3
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 10.4
phi_rad_av [rad]: 0.459
phi_rad_av/deg [deg]: 26.3
N_gamma [-]: 7.76
N_q [-]: 22.0
d_gamma [-]: 1.00
d_q [-]: 1.06
p0 [kPa]: 33.4
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.224E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.225E+06
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 449070.7
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 31.3
phi_lay_deg2 [deg]: 26.3
> Q_ub [kN]: 449070.7
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 2.80
< B_pt [m]: 19.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 2.80
< B_pt [m]: 19.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1925.369
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 3.50
< D_pt [m]: 4.00
< B_pt [m]: 19.5

Qv_SQC_fun: < — BEGIN
< D [m]: 4.00
< B_eq [m]: 19.5

ZTOP_sq_fun: < — BEGIN
< D [m]: 4.00
ZTOP_sq_fun [m bsf]: 4.00
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 4.00
T_sq [m]: 2.10
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 2.10
b_sq [-]: 0.330
B_eq [m]: 19.5
T_sq/b_sq [m]: 6.36
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 4.00
B_eq [m]: 19.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.205
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 514781.9
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 4.00
< B_eq [m]: 19.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 4.00
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 202.
D [m]: 4.00
z_top_first_CLAY_layer_aboveD [m bsf]: 4.00
sum = su0 – rho_av*D [kPa]: 202.
sum_modified = max(sum,0) [kPa]: 202.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 19.5
lambda = D/B_eq [-]: 0.205
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.57
su0 * Nc0 [kPa]: 0.133E+04
p0 [kPa]: 38.1
su0*Nc0 + p0 [kPa]: 0.137E+04
pi * B_eq * B_eq /4 [m^2]: 300.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 409201.2
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 26.3
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 514781.9
> Qv_fmode_pt :SQC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 3.50
< B_pt [m]: 19.5
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 3.50
< B_pt [m]: 19.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1423.625
dW_pt_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 4.00
< B_eq [m]: 19.5

ZTOP_sq_fun: < — BEGIN
< D [m]: 4.00
ZTOP_sq_fun [m bsf]: 4.00
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 4.00
T_sq [m]: 2.10
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 2.10
b_sq [-]: 0.330
B_eq [m]: 19.5
T_sq/b_sq [m]: 6.36
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 4.00
B_eq [m]: 19.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.205
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 514781.9
Qv_SQC_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 4.00
< B_eq [m]: 17.2

ZTOP_sq_fun: < — BEGIN
< D [m]: 4.00
ZTOP_sq_fun [m bsf]: 4.00
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 4.00
T_sq [m]: 2.10
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 2.10
b_sq [-]: 0.330
B_eq [m]: 17.2
T_sq/b_sq [m]: 6.36
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 4.00
B_eq [m]: 17.2
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.233
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 383497.1
Qv_SQC_fun: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 3.50
< B_pt [m]: 17.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 3.50
< B_pt [m]: 17.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1103.824
dW_pt_fun: END — >

D, D_pt [m]: 3.50 4.00
D_pt layer # [-]: 7
Qv_Fmode_PT [-]:PTS>SQC
decreasing dW for punch-through layer#[-]: 6
using B_eq (was B_pt), B_eq , B_pt [m]: 17.2 19.5
(B_eq/B_pt)^2 [-]: 0.775
old dW, new dW [kN]: 0.142E+04 0.110E+04
old Qv_SQC, new Qv_SQC (ie Q_ub) [kN]: 0.515E+06 0.383E+06

Q_ub_sub: < — BEGIN
< D [m]: 4.00
< D_pt [m]: 6.10
< B_pt [m]: 19.5

Qv_GSS_fun: < — BEGIN
< D [m]: 6.10
< B_eq [m]: 19.5

phi_av_fun: < — BEGIN
< z1 [m]: 6.10
phi_av [rad]: 0.512
> phi_av/deg [deg]: 29.3
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 9.34
phi_rad_av [rad]: 0.512
phi_rad_av/deg [deg]: 29.3
N_gamma [-]: 13.7
N_q [-]: 33.8
d_gamma [-]: 1.00
d_q [-]: 1.09
p0 [kPa]: 62.3
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.374E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.687E+06
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 1060173.
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 26.5
> Q_ub [kN]: 1060173.
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 4.00
< B_pt [m]: 19.5
Rs_pt [kN]: 82434.70
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 4.00
< B_pt [m]: 19.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 7235.995
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 6.10
< D_pt [m]: 6.30
< B_pt [m]: 19.7

Qv_SQC_fun: < — BEGIN
< D [m]: 6.30
< B_eq [m]: 19.7

ZTOP_sq_fun: < — BEGIN
< D [m]: 6.30
ZTOP_sq_fun [m bsf]: 6.30
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 6.30
T_sq [m]: 0.300
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.300
b_sq [-]: 0.330
B_eq [m]: 19.7
T_sq/b_sq [m]: 0.909
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 6.30
B_eq [m]: 19.7
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.320
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1956395.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 6.30
< B_eq [m]: 19.7
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 6.30
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 236.
D [m]: 6.30
z_top_first_CLAY_layer_aboveD [m bsf]: 6.30
sum = su0 – rho_av*D [kPa]: 236.
sum_modified = max(sum,0) [kPa]: 236.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 19.7
lambda = D/B_eq [-]: 0.320
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.76
su0 * Nc0 [kPa]: 0.159E+04
p0 [kPa]: 64.1
su0*Nc0 + p0 [kPa]: 0.166E+04
pi * B_eq * B_eq /4 [m^2]: 304.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 503866.1
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 26.5
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 1956395.
> Qv_fmode_pt :SQC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 6.10
< B_pt [m]: 19.7
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 6.10
< B_pt [m]: 19.7
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 546.8931
dW_pt_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 6.30
< B_eq [m]: 19.7

ZTOP_sq_fun: < — BEGIN
< D [m]: 6.30
ZTOP_sq_fun [m bsf]: 6.30
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 6.30
T_sq [m]: 0.300
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.300
b_sq [-]: 0.330
B_eq [m]: 19.7
T_sq/b_sq [m]: 0.909
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 6.30
B_eq [m]: 19.7
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.320
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1956395.
Qv_SQC_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 6.30
< B_eq [m]: 17.2

ZTOP_sq_fun: < — BEGIN
< D [m]: 6.30
ZTOP_sq_fun [m bsf]: 6.30
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 6.30
T_sq [m]: 0.300
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.300
b_sq [-]: 0.330
B_eq [m]: 17.2
T_sq/b_sq [m]: 0.909
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 6.30
B_eq [m]: 17.2
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.366
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1350652.
Qv_SQC_fun: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 6.10
< B_pt [m]: 17.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 6.10
< B_pt [m]: 17.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 418.3096
dW_pt_fun: END — >

D, D_pt [m]: 6.10 6.30
D_pt layer # [-]: 9
Qv_Fmode_PT [-]:PTS>SQC
decreasing dW for punch-through layer#[-]: 8
using B_eq (was B_pt), B_eq , B_pt [m]: 17.2 19.7
(B_eq/B_pt)^2 [-]: 0.765
old dW, new dW [kN]: 547. 418.
old Qv_SQC, new Qv_SQC (ie Q_ub) [kN]: 0.196E+07 0.135E+07

Q_ub_sub: < — BEGIN
< D [m]: 6.30
< D_pt [m]: 6.60
< B_pt [m]: 19.7

Qv_GSS_fun: < — BEGIN
< D [m]: 6.60
< B_eq [m]: 19.7

phi_av_fun: < — BEGIN
< z1 [m]: 6.60
phi_av [rad]: 0.523
> phi_av/deg [deg]: 30.0
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 9.18
phi_rad_av [rad]: 0.523
phi_rad_av/deg [deg]: 30.0
N_gamma [-]: 15.4
N_q [-]: 37.0
d_gamma [-]: 1.00
d_q [-]: 1.09
p0 [kPa]: 67.5
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.422E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.830E+06
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 1252710.
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 27.2
> Q_ub [kN]: 1252710.
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 6.30
< B_pt [m]: 19.7
Rs_pt [kN]: 12329.12
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 6.30
< B_pt [m]: 19.7
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1047.874
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 6.60
< D_pt [m]: 7.00
< B_pt [m]: 19.9

Qv_SQC_fun: < — BEGIN
< D [m]: 7.00
< B_eq [m]: 19.9

ZTOP_sq_fun: < — BEGIN
< D [m]: 7.00
ZTOP_sq_fun [m bsf]: 7.00
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 7.00
T_sq [m]: 0.900
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.900
b_sq [-]: 0.330
B_eq [m]: 19.9
T_sq/b_sq [m]: 2.73
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 7.00
B_eq [m]: 19.9
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.351
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 903214.2
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 7.00
< B_eq [m]: 19.9
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 7.00
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 189.
D [m]: 7.00
z_top_first_CLAY_layer_aboveD [m bsf]: 7.00
sum = su0 – rho_av*D [kPa]: 189.
sum_modified = max(sum,0) [kPa]: 189.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 19.9
lambda = D/B_eq [-]: 0.351
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.80
su0 * Nc0 [kPa]: 0.129E+04
p0 [kPa]: 71.2
su0*Nc0 + p0 [kPa]: 0.136E+04
pi * B_eq * B_eq /4 [m^2]: 312.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 423546.5
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 27.2
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 903214.2
> Qv_fmode_pt :SQC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 6.60
< B_pt [m]: 19.9
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 6.60
< B_pt [m]: 19.9
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1123.527
dW_pt_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 7.00
< B_eq [m]: 19.9

ZTOP_sq_fun: < — BEGIN
< D [m]: 7.00
ZTOP_sq_fun [m bsf]: 7.00
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 7.00
T_sq [m]: 0.900
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.900
b_sq [-]: 0.330
B_eq [m]: 19.9
T_sq/b_sq [m]: 2.73
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 7.00
B_eq [m]: 19.9
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.351
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 903214.2
Qv_SQC_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 7.00
< B_eq [m]: 17.2

ZTOP_sq_fun: < — BEGIN
< D [m]: 7.00
ZTOP_sq_fun [m bsf]: 7.00
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 7.00
T_sq [m]: 0.900
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.900
b_sq [-]: 0.330
B_eq [m]: 17.2
T_sq/b_sq [m]: 2.73
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 7.00
B_eq [m]: 17.2
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.407
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 624301.6
Qv_SQC_fun: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 6.60
< B_pt [m]: 17.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 6.60
< B_pt [m]: 17.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 836.5284
dW_pt_fun: END — >

D, D_pt [m]: 6.60 7.00
D_pt layer # [-]: 11
Qv_Fmode_PT [-]:PTS>SQC
decreasing dW for punch-through layer#[-]: 10
using B_eq (was B_pt), B_eq , B_pt [m]: 17.2 19.9
(B_eq/B_pt)^2 [-]: 0.745
old dW, new dW [kN]: 0.112E+04 837.
old Qv_SQC, new Qv_SQC (ie Q_ub) [kN]: 0.903E+06 0.624E+06

Q_ub_sub: < — BEGIN
< D [m]: 7.00
< D_pt [m]: 7.40
< B_pt [m]: 19.9

Qv_SQC_fun: < — BEGIN
< D [m]: 7.40
< B_eq [m]: 19.9

ZTOP_sq_fun: < — BEGIN
< D [m]: 7.40
ZTOP_sq_fun [m bsf]: 7.00
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 7.40
T_sq [m]: 0.500
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.500
b_sq [-]: 0.330
B_eq [m]: 19.9
T_sq/b_sq [m]: 1.52
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 7.00
B_eq [m]: 19.9
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.351
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1463013.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 7.40
< B_eq [m]: 19.9
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 7.40
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 248.
D [m]: 7.40
z_top_first_CLAY_layer_aboveD [m bsf]: 7.00
sum = su0 – rho_av*D [kPa]: 248.
sum_modified = max(sum,0) [kPa]: 248.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 19.9
lambda = D/B_eq [-]: 0.371
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.84
su0 * Nc0 [kPa]: 0.170E+04
p0 [kPa]: 75.0
su0*Nc0 + p0 [kPa]: 0.177E+04
pi * B_eq * B_eq /4 [m^2]: 312.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 552405.9
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 1463013.
> Qv_fmode_pt :SQC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 7.00
< B_pt [m]: 19.9
Rs_pt [kN]: 3551.412
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 7.00
< B_pt [m]: 19.9
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1185.860
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 7.40
< D_pt [m]: 7.90
< B_pt [m]: 19.9

Qv_GSS_fun: < — BEGIN
< D [m]: 7.90
< B_eq [m]: 19.9

phi_av_fun: < — BEGIN
< z1 [m]: 7.90
phi_av [rad]: 0.540
> phi_av/deg [deg]: 30.9
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 9.09
phi_rad_av [rad]: 0.540
phi_rad_av/deg [deg]: 30.9
N_gamma [-]: 18.5
N_q [-]: 42.7
d_gamma [-]: 1.00
d_q [-]: 1.11
p0 [kPa]: 79.7
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.524E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.117E+07
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 1698380.
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 25.3
> Q_ub [kN]: 1698380.
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 7.40
< B_pt [m]: 19.9
Rs_pt [kN]: 21108.77
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 7.40
< B_pt [m]: 19.9
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1482.223
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 7.90
< D_pt [m]: 8.60
< B_pt [m]: 20.4

Qv_SQC_fun: < — BEGIN
< D [m]: 8.60
< B_eq [m]: 20.4

ZTOP_sq_fun: < — BEGIN
< D [m]: 8.60
ZTOP_sq_fun [m bsf]: 8.60
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 8.60
T_sq [m]: 0.900
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.900
b_sq [-]: 0.330
B_eq [m]: 20.4
T_sq/b_sq [m]: 2.73
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.60
B_eq [m]: 20.4
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.422
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1267697.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 8.60
< B_eq [m]: 20.4
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 8.60
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 317.
D [m]: 8.60
z_top_first_CLAY_layer_aboveD [m bsf]: 8.60
sum = su0 – rho_av*D [kPa]: 317.
sum_modified = max(sum,0) [kPa]: 317.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 20.4
lambda = D/B_eq [-]: 0.422
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.91
su0 * Nc0 [kPa]: 0.219E+04
p0 [kPa]: 86.0
su0*Nc0 + p0 [kPa]: 0.228E+04
pi * B_eq * B_eq /4 [m^2]: 327.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 744238.4
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 25.3
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 1267697.
> Qv_fmode_pt :SQC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 7.90
< B_pt [m]: 20.4
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 7.90
< B_pt [m]: 20.4
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2059.312
dW_pt_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 8.60
< B_eq [m]: 20.4

ZTOP_sq_fun: < — BEGIN
< D [m]: 8.60
ZTOP_sq_fun [m bsf]: 8.60
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 8.60
T_sq [m]: 0.900
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.900
b_sq [-]: 0.330
B_eq [m]: 20.4
T_sq/b_sq [m]: 2.73
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.60
B_eq [m]: 20.4
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.422
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1267697.
Qv_SQC_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 8.60
< B_eq [m]: 17.2

ZTOP_sq_fun: < — BEGIN
< D [m]: 8.60
ZTOP_sq_fun [m bsf]: 8.60
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 8.60
T_sq [m]: 0.900
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.900
b_sq [-]: 0.330
B_eq [m]: 17.2
T_sq/b_sq [m]: 2.73
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.60
B_eq [m]: 17.2
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.500
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 827947.1
Qv_SQC_fun: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 7.90
< B_pt [m]: 17.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 7.90
< B_pt [m]: 17.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1463.925
dW_pt_fun: END — >

D, D_pt [m]: 7.90 8.60
D_pt layer # [-]: 14
Qv_Fmode_PT [-]:PTS>SQC
decreasing dW for punch-through layer#[-]: 13
using B_eq (was B_pt), B_eq , B_pt [m]: 17.2 20.4
(B_eq/B_pt)^2 [-]: 0.711
old dW, new dW [kN]: 0.206E+04 0.146E+04
old Qv_SQC, new Qv_SQC (ie Q_ub) [kN]: 0.127E+07 0.828E+06

Q_ub_sub: < — BEGIN
< D [m]: 8.60
< D_pt [m]: 9.20
< B_pt [m]: 20.4

Qv_SQC_fun: < — BEGIN
< D [m]: 9.20
< B_eq [m]: 20.4

ZTOP_sq_fun: < — BEGIN
< D [m]: 9.20
ZTOP_sq_fun [m bsf]: 8.60
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 9.20
T_sq [m]: 0.300
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.300
b_sq [-]: 0.330
B_eq [m]: 20.4
T_sq/b_sq [m]: 0.909
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.60
B_eq [m]: 20.4
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.422
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 2243228.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 9.20
< B_eq [m]: 20.4
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 9.20
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 242.
D [m]: 9.20
z_top_first_CLAY_layer_aboveD [m bsf]: 8.60
sum = su0 – rho_av*D [kPa]: 242.
sum_modified = max(sum,0) [kPa]: 242.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 20.4
lambda = D/B_eq [-]: 0.451
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.96
su0 * Nc0 [kPa]: 0.168E+04
p0 [kPa]: 91.7
su0*Nc0 + p0 [kPa]: 0.177E+04
pi * B_eq * B_eq /4 [m^2]: 327.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 580133.8
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 2243228.
> Qv_fmode_pt :SQC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 8.60
< B_pt [m]: 20.4
Rs_pt [kN]: 9140.815
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 8.60
< B_pt [m]: 20.4
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1863.052
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 9.20
< D_pt [m]: 9.50
< B_pt [m]: 20.4

Qv_GSS_fun: < — BEGIN
< D [m]: 9.50
< B_eq [m]: 20.4

phi_av_fun: < — BEGIN
< z1 [m]: 9.50
phi_av [rad]: 0.559
> phi_av/deg [deg]: 32.0
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 9.00
phi_rad_av [rad]: 0.559
phi_rad_av/deg [deg]: 32.0
N_gamma [-]: 22.9
N_q [-]: 50.3
d_gamma [-]: 1.00
d_q [-]: 1.12
p0 [kPa]: 94.6
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.687E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.174E+07
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 2428665.
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 32.0
> Q_ub [kN]: 2428665.
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 9.20
< B_pt [m]: 20.4
Rs_pt [kN]: 12875.31
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 9.20
< B_pt [m]: 20.4
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 931.4624
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 9.50
< D_pt [m]: 11.5
< B_pt [m]: 21.7

Qv_GSS_fun: < — BEGIN
< D [m]: 11.5
< B_eq [m]: 21.7

phi_av_fun: < — BEGIN
< z1 [m]: 11.5
phi_av [rad]: 0.559
> phi_av/deg [deg]: 32.0
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 8.99
phi_rad_av [rad]: 0.559
phi_rad_av/deg [deg]: 32.0
N_gamma [-]: 22.9
N_q [-]: 50.3
d_gamma [-]: 1.00
d_q [-]: 1.13
p0 [kPa]: 113.
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.830E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.238E+07
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 3212329.
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 32.0
phi_lay_deg2 [deg]: 32.0
> Q_ub [kN]: 3212329.
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 9.50
< B_pt [m]: 21.7
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 9.50
< B_pt [m]: 21.7
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 6677.518
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 11.5
< D_pt [m]: 12.8
< B_pt [m]: 22.6

Qv_GSS_fun: < — BEGIN
< D [m]: 12.8
< B_eq [m]: 22.6

phi_av_fun: < — BEGIN
< z1 [m]: 12.8
phi_av [rad]: 0.559
> phi_av/deg [deg]: 32.0
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 8.72
phi_rad_av [rad]: 0.559
phi_rad_av/deg [deg]: 32.0
N_gamma [-]: 22.9
N_q [-]: 50.3
d_gamma [-]: 1.00
d_q [-]: 1.14
p0 [kPa]: 124.
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.905E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.286E+07
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 3768675.
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 32.0
phi_lay_deg2 [deg]: 32.0
> Q_ub [kN]: 3768675.
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 11.5
< B_pt [m]: 22.6
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 11.5
< B_pt [m]: 22.6
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 4693.455
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 12.8
< D_pt [m]: 14.3
< B_pt [m]: 23.6

Qv_GSS_fun: < — BEGIN
< D [m]: 14.3
< B_eq [m]: 23.6

phi_av_fun: < — BEGIN
< z1 [m]: 14.3
phi_av [rad]: 0.559
> phi_av/deg [deg]: 32.0
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 8.43
phi_rad_av [rad]: 0.559
phi_rad_av/deg [deg]: 32.0
N_gamma [-]: 22.9
N_q [-]: 50.3
d_gamma [-]: 1.00
d_q [-]: 1.15
p0 [kPa]: 138.
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.997E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.349E+07
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 4483627.
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 32.0
phi_lay_deg2 [deg]: 32.0
> Q_ub [kN]: 4483627.
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 12.8
< B_pt [m]: 23.6
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 12.8
< B_pt [m]: 23.6
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 5905.377
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 14.3
< D_pt [m]: 15.0
< B_pt [m]: 24.1

Qv_GSS_fun: < — BEGIN
< D [m]: 15.0
< B_eq [m]: 24.1

phi_av_fun: < — BEGIN
< z1 [m]: 15.0
phi_av [rad]: 0.559
> phi_av/deg [deg]: 32.0
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 8.31
phi_rad_av [rad]: 0.559
phi_rad_av/deg [deg]: 32.0
N_gamma [-]: 22.9
N_q [-]: 50.3
d_gamma [-]: 1.00
d_q [-]: 1.15
p0 [kPa]: 144.
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.104E+07
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.380E+07
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 4845476.
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 32.0
phi_lay_deg2 [deg]: 32.0
> Q_ub [kN]: 4845476.
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 14.3
< B_pt [m]: 24.1
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 14.3
< B_pt [m]: 24.1
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2865.908
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 15.0
< D_pt [m]: 15.5
< B_pt [m]: 24.4

Qv_SQC_fun: < — BEGIN
< D [m]: 15.5
< B_eq [m]: 24.4

ZTOP_sq_fun: < — BEGIN
< D [m]: 15.5
ZTOP_sq_fun [m bsf]: 15.5
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 15.5
T_sq [m]: 0.500
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.500
b_sq [-]: 0.330
B_eq [m]: 24.4
T_sq/b_sq [m]: 1.52
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 15.5
B_eq [m]: 24.4
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.635
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 4363777.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 15.5
< B_eq [m]: 24.4
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 15.5
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 420.
D [m]: 15.5
z_top_first_CLAY_layer_aboveD [m bsf]: 15.5
sum = su0 – rho_av*D [kPa]: 420.
sum_modified = max(sum,0) [kPa]: 420.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.4
lambda = D/B_eq [-]: 0.635
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.22
su0 * Nc0 [kPa]: 0.303E+04
p0 [kPa]: 149.
su0*Nc0 + p0 [kPa]: 0.318E+04
pi * B_eq * B_eq /4 [m^2]: 468.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 1487090.
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 32.0
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 4363777.
> Qv_fmode_pt :SQC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 15.0
< B_pt [m]: 24.4
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 15.0
< B_pt [m]: 24.4
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2104.328
dW_pt_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 15.5
< B_eq [m]: 24.4

ZTOP_sq_fun: < — BEGIN
< D [m]: 15.5
ZTOP_sq_fun [m bsf]: 15.5
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 15.5
T_sq [m]: 0.500
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.500
b_sq [-]: 0.330
B_eq [m]: 24.4
T_sq/b_sq [m]: 1.52
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 15.5
B_eq [m]: 24.4
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.635
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 4363777.
Qv_SQC_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 15.5
< B_eq [m]: 17.2

ZTOP_sq_fun: < — BEGIN
< D [m]: 15.5
ZTOP_sq_fun [m bsf]: 15.5
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 15.5
T_sq [m]: 0.500
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.500
b_sq [-]: 0.330
B_eq [m]: 17.2
T_sq/b_sq [m]: 1.52
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 15.5
B_eq [m]: 17.2
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.901
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1735805.
Qv_SQC_fun: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 15.0
< B_pt [m]: 17.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 15.0
< B_pt [m]: 17.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1045.661
dW_pt_fun: END — >

D, D_pt [m]: 15.0 15.5
D_pt layer # [-]: 21
Qv_Fmode_PT [-]:PTS>SQC
decreasing dW for punch-through layer#[-]: 20
using B_eq (was B_pt), B_eq , B_pt [m]: 17.2 24.4
(B_eq/B_pt)^2 [-]: 0.497
old dW, new dW [kN]: 0.210E+04 0.105E+04
old Qv_SQC, new Qv_SQC (ie Q_ub) [kN]: 0.436E+07 0.174E+07

Q_ub_sub: < — BEGIN
< D [m]: 15.5
< D_pt [m]: 16.0
< B_pt [m]: 24.4

Qv_GSS_fun: < — BEGIN
< D [m]: 16.0
< B_eq [m]: 24.4

phi_av_fun: < — BEGIN
< z1 [m]: 16.0
phi_av [rad]: 0.559
> phi_av/deg [deg]: 32.0
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 8.10
phi_rad_av [rad]: 0.559
phi_rad_av/deg [deg]: 32.0
N_gamma [-]: 22.9
N_q [-]: 50.3
d_gamma [-]: 1.00
d_q [-]: 1.16
p0 [kPa]: 153.
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.106E+07
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.418E+07
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 5241476.
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 32.0
> Q_ub [kN]: 5241476.
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 15.5
< B_pt [m]: 24.4
Rs_pt [kN]: 30779.85
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 15.5
< B_pt [m]: 24.4
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2220.922
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 16.0
< D_pt [m]: 16.6
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 16.6
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 16.6
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 16.6
T_sq [m]: 14.8
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 14.8
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 44.8
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 16.6
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 16.6
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 112.
D [m]: 16.6
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 112.
sum_modified = max(sum,0) [kPa]: 112.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 0.669
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.27
su0 * Nc0 [kPa]: 814.
p0 [kPa]: 159.
su0*Nc0 + p0 [kPa]: 972.
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 469717.6
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 32.0
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 469717.6
> Qv_fmode_pt :GSC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 16.0
< B_pt [m]: 24.8
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 16.0
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2608.288
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 16.6
< D_pt [m]: 19.0
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 19.0
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 19.0
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 19.0
T_sq [m]: 14.5
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 14.5
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 43.9
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 19.0
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 19.0
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 120.
D [m]: 19.0
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 120.
sum_modified = max(sum,0) [kPa]: 120.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 0.766
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.39
su0 * Nc0 [kPa]: 887.
p0 [kPa]: 178.
su0*Nc0 + p0 [kPa]: 0.107E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 514572.0
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 514572.0
> Qv_fmode_pt :GSC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 16.6
< B_pt [m]: 24.8
Rs_pt [kN]: 15708.42
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 16.6
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 9274.585
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 19.0
< D_pt [m]: 20.4
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 20.4
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 20.4
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 20.4
T_sq [m]: 13.1
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 13.1
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 39.7
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 20.4
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 20.4
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 133.
D [m]: 20.4
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 133.
sum_modified = max(sum,0) [kPa]: 133.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 0.823
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.47
su0 * Nc0 [kPa]: 993.
p0 [kPa]: 189.
su0*Nc0 + p0 [kPa]: 0.118E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 571142.7
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 571142.7
> Qv_fmode_pt :GSC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 19.0
< B_pt [m]: 24.8
Rs_pt [kN]: 9817.541
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 19.0
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 5410.174
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 20.4
< D_pt [m]: 21.5
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 21.5
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 21.5
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 21.5
T_sq [m]: 14.5
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 14.5
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 43.9
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 21.5
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 21.5
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 119.
D [m]: 21.5
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 119.
sum_modified = max(sum,0) [kPa]: 119.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 0.867
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.52
su0 * Nc0 [kPa]: 895.
p0 [kPa]: 198.
su0*Nc0 + p0 [kPa]: 0.109E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 528154.6
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 528154.6
> Qv_fmode_pt :GSC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 20.4
< B_pt [m]: 24.8
Rs_pt [kN]: 8548.253
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 20.4
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 4250.851
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 21.5
< D_pt [m]: 22.5
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 22.5
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 22.5
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 22.5
T_sq [m]: 13.5
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 13.5
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 40.9
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 22.5
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 22.5
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 134.
D [m]: 22.5
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 134.
sum_modified = max(sum,0) [kPa]: 134.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 0.907
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.58
su0 * Nc0 [kPa]: 0.102E+04
p0 [kPa]: 206.
su0*Nc0 + p0 [kPa]: 0.122E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 589840.9
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 589840.9
> Qv_fmode_pt :GSC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 21.5
< B_pt [m]: 24.8
Rs_pt [kN]: 6954.172
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 21.5
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 3864.410
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 22.5
< D_pt [m]: 23.7
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 23.7
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 23.7
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 23.7
T_sq [m]: 12.3
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 12.3
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 37.3
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 23.7
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 23.7
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 121.
D [m]: 23.7
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 121.
sum_modified = max(sum,0) [kPa]: 121.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 0.956
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.64
su0 * Nc0 [kPa]: 924.
p0 [kPa]: 215.
su0*Nc0 + p0 [kPa]: 0.114E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 550426.9
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 550426.9
> Qv_fmode_pt :GSC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 22.5
< B_pt [m]: 24.8
Rs_pt [kN]: 9395.533
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 22.5
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 4637.292
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 23.7
< D_pt [m]: 24.1
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 24.1
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 24.1
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 24.1
T_sq [m]: 11.9
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 11.9
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 36.1
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 24.1
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 24.1
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 136.
D [m]: 24.1
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 136.
sum_modified = max(sum,0) [kPa]: 136.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 0.972
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.66
su0 * Nc0 [kPa]: 0.104E+04
p0 [kPa]: 219.
su0*Nc0 + p0 [kPa]: 0.126E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 608609.3
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 608609.3
> Qv_fmode_pt :GSC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 23.7
< B_pt [m]: 24.8
Rs_pt [kN]: 2828.416
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 23.7
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1545.764
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 24.1
< D_pt [m]: 28.6
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 28.6
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 28.6
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 28.6
T_sq [m]: 7.40
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 7.40
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 22.4
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 620812.0
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 28.6
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 28.6
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 141.
D [m]: 28.6
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 141.
sum_modified = max(sum,0) [kPa]: 141.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 1.15
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.87
su0 * Nc0 [kPa]: 0.111E+04
p0 [kPa]: 255.
su0*Nc0 + p0 [kPa]: 0.136E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 659283.0
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 659283.0
> Qv_fmode_pt :GSC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 24.1
< B_pt [m]: 24.8
Rs_pt [kN]: 35764.80
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 24.1
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 17389.85
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 28.6
< D_pt [m]: 31.4
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 31.4
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 31.4
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 31.4
T_sq [m]: 4.60
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 4.60
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 13.9
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 677263.3
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 31.4
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 31.4
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 129.
D [m]: 31.4
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 129.
sum_modified = max(sum,0) [kPa]: 129.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 1.27
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 8.00
su0 * Nc0 [kPa]: 0.103E+04
p0 [kPa]: 277.
su0*Nc0 + p0 [kPa]: 0.131E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 632534.5
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 677263.3
> Qv_fmode_pt :SQC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 28.6
< B_pt [m]: 24.8
Rs_pt [kN]: 23068.32
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 28.6
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 10820.35
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 31.4
< D_pt [m]: 33.5
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 33.5
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 33.5
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 33.5
T_sq [m]: 2.50
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 2.50
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 7.58
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 815924.3
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 33.5
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 33.5
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 141.
D [m]: 33.5
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 141.
sum_modified = max(sum,0) [kPa]: 141.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 1.35
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 8.10
su0 * Nc0 [kPa]: 0.114E+04
p0 [kPa]: 294.
su0*Nc0 + p0 [kPa]: 0.144E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 693477.1
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 815924.3
> Qv_fmode_pt :SQC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 31.4
< B_pt [m]: 24.8
Rs_pt [kN]: 15830.63
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 31.4
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 8115.262
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 33.5
< D_pt [m]: 36.0
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 36.0
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 36.0
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 36.0
T_sq [m]: 0.100E-02
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.100E-02
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 0.303E-02
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 0.6015470E+09
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 36.0
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 36.0
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 152.
D [m]: 36.0
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 152.
sum_modified = max(sum,0) [kPa]: 152.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 1.45
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 8.21
su0 * Nc0 [kPa]: 0.125E+04
p0 [kPa]: 314.
su0*Nc0 + p0 [kPa]: 0.156E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 754227.1
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 754227.1
> Qv_fmode_pt :GSC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 33.5
< B_pt [m]: 24.8
Rs_pt [kN]: 20598.90
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 33.5
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 9661.026
dW_pt_fun: END — >

D D_pt B_pt T_pt Q_ub Rs_pt dW_pt lay_D_pt sum_W_pt sum_Rs_pt Qv_D . Qv_fmode
[m] [m] [m] [m] [kN] [kN] [kN] [-] [kN] [kN] [kN]
0.500 0.500 17.2 0.00 360570.1 0.000000 0.000000 2 0.000000 0.000000 360570.1 * 1 GSS
0.500 0.600 17.3 0.100 380141.3 0.000000 222.4490 3 222.4490 0.000000 379918.9 3 PTS>GSS
0.600 1.50 17.9 0.900 568242.5 0.000000 2143.597 4 2381.774 0.000000 565860.7 6 PTS>PTS>GSS
1.50 2.00 18.2 0.500 581653.4 0.000000 1235.738 5 3707.213 0.000000 577946.2 8 PTS>PTS>PTS>GSS
2.00 2.80 18.7 0.800 548154.3 0.000000 2094.757 6 6022.426 0.000000 542131.9 5 PTS>PTS>PTS>PTS>GSS
2.80 3.50 19.2 0.700 449070.7 0.000000 1925.369 7 8251.582 0.000000 440819.1 4 PTS>PTS>PTS>PTS>PTS>GSS
3.50 4.00 17.2 0.500 383497.1 0.000000 1103.824 8 7725.862 0.000000 375771.3 2 PTS>PTS>PTS>PTS>PTS>PTS>SQC
4.00 6.10 19.5 2.10 1060173. 82434.70 7235.995 9 17200.20 82434.70 1125407. 21 PTS>PTS>PTS>PTS>PTS>PTS>PTC>GSS
6.10 6.30 17.2 0.200 1350652. 0.000000 418.3096 10 13754.68 82434.70 1419332. 23 PTS>PTS>PTS>PTS>PTS>PTS>PTC>PTS>SQC
6.30 6.60 19.7 0.300 1252710. 12329.12 1047.874 11 19030.59 94763.82 1328443. 22 PTS>PTS>PTS>PTS>PTS>PTS>PTC>PTS>PTC>GSS
6.60 7.00 17.2 0.400 624301.6 0.000000 836.5284 12 15392.71 94763.82 703672.7 13 PTS>PTS>PTS>PTS>PTS>PTS>PTC>PTS>PTC>PTS>SQC
7.00 7.40 19.9 0.400 1463013. 3551.412 1185.860 13 21859.56 98315.23 1539469. 24 PTS>PTS>PTS>PTS>PTS>PTS>PTC>PTS>PTC>PTS>PTC>SQC
7.40 7.90 19.9 0.500 1698380. 21108.77 1482.223 14 23341.78 119424.0 1794463. 25 PTS>PTS>PTS>PTS>PTS>PTS>PTC>PTS>PTC>PTS>PTC>PTC>GSS
7.90 8.60 17.2 0.700 827947.1 0.000000 1463.925 15 18843.17 119424.0 928527.9 19 PTS>PTS>PTS>PTS>PTS>PTS>PTC>PTS>PTC>PTS>PTC>PTC>PTS>SQC
8.60 9.20 20.4 0.600 2243228. 9140.815 1863.052 16 28369.86 128564.8 2343423. 27 PTS>PTS>PTS>PTS>PTS>PTS>PTC>PTS>PTC>PTS>PTC>PTC>PTS>PTC>SQC
9.20 9.50 20.4 0.300 2428665. 12875.31 931.4624 17 29301.33 141440.1 2540804. 28 PTS>PTS>PTS>PTS>PTS>PTS>PTC>PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>GSS
9.50 11.5 21.7 2.00 3212329. 0.000000 6677.518 18 39934.25 141440.1 3313835. 29 PTS>PTS>PTS>PTS>PTS>PTS>PTC>PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>GSS
11.5 12.8 22.6 1.30 3768675. 0.000000 4693.455 19 47876.15 141440.1 3862239. 30 PTS>PTS>PTS>PTS>PTS>PTS>PTC>PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>GSS
12.8 14.3 23.6 1.50 4483627. 0.000000 5905.377 20 58112.09 141440.1 4566955. 31 PTS>PTS>PTS>PTS>PTS>PTS>PTC>PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>GSS
14.3 15.0 24.1 0.700 4845476. 0.000000 2865.908 21 63298.94 141440.1 4923617. 32 PTS>PTS>PTS>PTS>PTS>….>PTC>PTS>PTS>PTS>PTS>GSS
15.0 15.5 17.2 0.500 1735805. 0.000000 1045.661 22 33376.83 141440.1 1843868. 26 PTS>PTS>PTS>PTS>PTS>….>PTS>PTS>PTS>PTS>PTS>SQC
15.5 16.0 24.4 0.500 5241476. 30779.85 2220.922 23 69389.77 172220.0 5344306. 33 PTS>PTS>PTS>PTS>PTS>….>PTS>PTS>PTS>PTS>PTC>GSS
16.0 16.6 24.8 0.600 469717.6 0.000000 2608.288 24 74291.78 172220.0 567645.8 7 PTS>PTS>PTS>PTS>PTS>….>PTS>PTS>PTS>PTC>PTS>GSC
16.6 19.0 24.8 2.40 514572.0 15708.42 9274.585 25 83566.36 187928.4 618934.0 9 PTS>PTS>PTS>PTS>PTS>….>PTS>PTS>PTC>PTS>PTC>GSC
19.0 20.4 24.8 1.40 571142.7 9817.541 5410.174 26 88976.54 197745.9 679912.1 12 PTS>PTS>PTS>PTS>PTS>….>PTS>PTC>PTS>PTC>PTC>GSC
20.4 21.5 24.8 1.10 528154.6 8548.253 4250.851 27 93227.39 206294.2 641221.4 10 PTS>PTS>PTS>PTS>PTS>….>PTC>PTS>PTC>PTC>PTC>GSC
21.5 22.5 24.8 1.00 589840.9 6954.172 3864.410 28 97091.80 213248.4 705997.4 14 PTS>PTS>PTS>PTS>PTS>….>PTS>PTC>PTC>PTC>PTC>GSC
22.5 23.7 24.8 1.20 550426.9 9395.533 4637.292 29 101729.1 222643.9 671341.7 11 PTS>PTS>PTS>PTS>PTS>….>PTC>PTC>PTC>PTC>PTC>GSC
23.7 24.1 24.8 0.400 608609.3 2828.416 1545.764 30 103274.9 225472.3 730806.8 15 PTS>PTS>PTS>PTS>PTS>….>PTC>PTC>PTC>PTC>PTC>GSC
24.1 28.6 24.8 4.50 659283.0 35764.80 17389.85 31 120664.7 261237.1 799855.4 16 PTS>PTS>PTS>PTS>PTS>….>PTC>PTC>PTC>PTC>PTC>GSC
28.6 31.4 24.8 2.80 677263.3 23068.32 10820.35 32 131485.1 284305.4 830083.7 17 PTS>PTS>PTS>PTS>PTS>….>PTC>PTC>PTC>PTC>PTC>SQC
31.4 33.5 24.8 2.10 815924.3 15830.63 8115.262 33 139600.3 300136.0 976460.0 20 PTS>PTS>PTS>PTS>PTS>….>PTC>PTC>PTC>PTC>PTC>SQC
33.5 36.0 24.8 2.50 754227.1 20598.90 9661.026 34 149261.3 320734.9 925700.7 18 PTS>PTS>PTS>PTS>PTS>….>PTC>PTC>PTC>PTC>PTC>GSC
> Qv_Dpt [kN]: 360570.1
Qv_Dpt_sub: END — >

ioutd_z_tip_verify: < — BEGIN
< z_tip_verify [m]: 3.00

Qv, GROSS resistances at foundation depth D ——:
————————————————–:

Qv_Dpt_sub: < — BEGIN
< D [m]: 0.500
< B_eq [m]: 17.2

Q_ub_sub: < — BEGIN
< D [m]: 0.500
< D_pt [m]: 0.500
< B_pt [m]: 17.2

Qv_GSS_fun: < — BEGIN
< D [m]: 0.500
< B_eq [m]: 17.2

phi_av_fun: < — BEGIN
< z1 [m]: 0.500
phi_av [rad]: 0.527
> phi_av/deg [deg]: 30.2
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 9.87
phi_rad_av [rad]: 0.527
phi_rad_av/deg [deg]: 30.2
N_gamma [-]: 16.1
N_q [-]: 38.2
d_gamma [-]: 1.00
d_q [-]: 1.01
p0 [kPa]: 4.90
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.317E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.439E+05
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 360570.1
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 27.7
phi_lay_deg2 [deg]: 27.7
> Q_ub [kN]: 360570.1
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 0.500
< B_pt [m]: 17.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 0.500
< B_pt [m]: 17.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 0.000000
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 0.500
< D_pt [m]: 0.600
< B_pt [m]: 17.3

Qv_GSS_fun: < — BEGIN
< D [m]: 0.600
< B_eq [m]: 17.3

phi_av_fun: < — BEGIN
< z1 [m]: 0.600
phi_av [rad]: 0.528
> phi_av/deg [deg]: 30.2
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 9.92
phi_rad_av [rad]: 0.528
phi_rad_av/deg [deg]: 30.2
N_gamma [-]: 16.3
N_q [-]: 38.6
d_gamma [-]: 1.00
d_q [-]: 1.01
p0 [kPa]: 5.85
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.327E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.534E+05
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 380141.3
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 27.7
phi_lay_deg2 [deg]: 28.9
> Q_ub [kN]: 380141.3
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 0.500
< B_pt [m]: 17.3
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 0.500
< B_pt [m]: 17.3
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 222.4490
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 0.600
< D_pt [m]: 1.50
< B_pt [m]: 17.9

Qv_GSS_fun: < — BEGIN
< D [m]: 1.50
< B_eq [m]: 17.9

phi_av_fun: < — BEGIN
< z1 [m]: 1.50
phi_av [rad]: 0.536
> phi_av/deg [deg]: 30.7
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 10.4
phi_rad_av [rad]: 0.536
phi_rad_av/deg [deg]: 30.7
N_gamma [-]: 17.8
N_q [-]: 41.5
d_gamma [-]: 1.00
d_q [-]: 1.02
p0 [kPa]: 14.4
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.415E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.153E+06
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 568242.5
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 28.9
phi_lay_deg2 [deg]: 32.0
> Q_ub [kN]: 568242.5
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 0.600
< B_pt [m]: 17.9
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 0.600
< B_pt [m]: 17.9
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2143.597
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 1.50
< D_pt [m]: 2.00
< B_pt [m]: 18.2

Qv_GSS_fun: < — BEGIN
< D [m]: 2.00
< B_eq [m]: 18.2

phi_av_fun: < — BEGIN
< z1 [m]: 2.00
phi_av [rad]: 0.524
> phi_av/deg [deg]: 30.0
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 10.5
phi_rad_av [rad]: 0.524
phi_rad_av/deg [deg]: 30.0
N_gamma [-]: 15.6
N_q [-]: 37.5
d_gamma [-]: 1.00
d_q [-]: 1.03
p0 [kPa]: 19.1
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.389E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.192E+06
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 581653.4
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 32.0
phi_lay_deg2 [deg]: 32.0
> Q_ub [kN]: 581653.4
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 1.50
< B_pt [m]: 18.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 1.50
< B_pt [m]: 18.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1235.738
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 2.00
< D_pt [m]: 2.80
< B_pt [m]: 18.7

Qv_GSS_fun: < — BEGIN
< D [m]: 2.80
< B_eq [m]: 18.7

phi_av_fun: < — BEGIN
< z1 [m]: 2.80
phi_av [rad]: 0.498
> phi_av/deg [deg]: 28.5
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 10.4
phi_rad_av [rad]: 0.498
phi_rad_av/deg [deg]: 28.5
N_gamma [-]: 11.7
N_q [-]: 30.1
d_gamma [-]: 1.00
d_q [-]: 1.04
p0 [kPa]: 26.7
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.316E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.232E+06
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 548154.3
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 32.0
phi_lay_deg2 [deg]: 31.3
> Q_ub [kN]: 548154.3
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 2.00
< B_pt [m]: 18.7
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 2.00
< B_pt [m]: 18.7
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2094.757
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 2.80
< D_pt [m]: 3.50
< B_pt [m]: 19.2

Qv_GSS_fun: < — BEGIN
< D [m]: 3.50
< B_eq [m]: 19.2

phi_av_fun: < — BEGIN
< z1 [m]: 3.50
phi_av [rad]: 0.459
> phi_av/deg [deg]: 26.3
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 10.4
phi_rad_av [rad]: 0.459
phi_rad_av/deg [deg]: 26.3
N_gamma [-]: 7.76
N_q [-]: 22.0
d_gamma [-]: 1.00
d_q [-]: 1.06
p0 [kPa]: 33.4
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.224E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.225E+06
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 449070.7
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 31.3
phi_lay_deg2 [deg]: 26.3
> Q_ub [kN]: 449070.7
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 2.80
< B_pt [m]: 19.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 2.80
< B_pt [m]: 19.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1925.369
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 3.50
< D_pt [m]: 4.00
< B_pt [m]: 19.5

Qv_SQC_fun: < — BEGIN
< D [m]: 4.00
< B_eq [m]: 19.5

ZTOP_sq_fun: < — BEGIN
< D [m]: 4.00
ZTOP_sq_fun [m bsf]: 4.00
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 4.00
T_sq [m]: 2.10
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 2.10
b_sq [-]: 0.330
B_eq [m]: 19.5
T_sq/b_sq [m]: 6.36
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 4.00
B_eq [m]: 19.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.205
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 514781.9
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 4.00
< B_eq [m]: 19.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 4.00
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 202.
D [m]: 4.00
z_top_first_CLAY_layer_aboveD [m bsf]: 4.00
sum = su0 – rho_av*D [kPa]: 202.
sum_modified = max(sum,0) [kPa]: 202.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 19.5
lambda = D/B_eq [-]: 0.205
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.57
su0 * Nc0 [kPa]: 0.133E+04
p0 [kPa]: 38.1
su0*Nc0 + p0 [kPa]: 0.137E+04
pi * B_eq * B_eq /4 [m^2]: 300.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 409201.2
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 26.3
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 514781.9
> Qv_fmode_pt :SQC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 3.50
< B_pt [m]: 19.5
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 3.50
< B_pt [m]: 19.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1423.625
dW_pt_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 4.00
< B_eq [m]: 19.5

ZTOP_sq_fun: < — BEGIN
< D [m]: 4.00
ZTOP_sq_fun [m bsf]: 4.00
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 4.00
T_sq [m]: 2.10
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 2.10
b_sq [-]: 0.330
B_eq [m]: 19.5
T_sq/b_sq [m]: 6.36
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 4.00
B_eq [m]: 19.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.205
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 514781.9
Qv_SQC_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 4.00
< B_eq [m]: 17.2

ZTOP_sq_fun: < — BEGIN
< D [m]: 4.00
ZTOP_sq_fun [m bsf]: 4.00
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 4.00
T_sq [m]: 2.10
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 2.10
b_sq [-]: 0.330
B_eq [m]: 17.2
T_sq/b_sq [m]: 6.36
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 4.00
B_eq [m]: 17.2
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.233
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 383497.1
Qv_SQC_fun: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 3.50
< B_pt [m]: 17.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 3.50
< B_pt [m]: 17.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1103.824
dW_pt_fun: END — >

D, D_pt [m]: 3.50 4.00
D_pt layer # [-]: 7
Qv_Fmode_PT [-]:PTS>SQC
decreasing dW for punch-through layer#[-]: 6
using B_eq (was B_pt), B_eq , B_pt [m]: 17.2 19.5
(B_eq/B_pt)^2 [-]: 0.775
old dW, new dW [kN]: 0.142E+04 0.110E+04
old Qv_SQC, new Qv_SQC (ie Q_ub) [kN]: 0.515E+06 0.383E+06

Q_ub_sub: < — BEGIN
< D [m]: 4.00
< D_pt [m]: 6.10
< B_pt [m]: 19.5

Qv_GSS_fun: < — BEGIN
< D [m]: 6.10
< B_eq [m]: 19.5

phi_av_fun: < — BEGIN
< z1 [m]: 6.10
phi_av [rad]: 0.512
> phi_av/deg [deg]: 29.3
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 9.34
phi_rad_av [rad]: 0.512
phi_rad_av/deg [deg]: 29.3
N_gamma [-]: 13.7
N_q [-]: 33.8
d_gamma [-]: 1.00
d_q [-]: 1.09
p0 [kPa]: 62.3
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.374E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.687E+06
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 1060173.
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 26.5
> Q_ub [kN]: 1060173.
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 4.00
< B_pt [m]: 19.5
Rs_pt [kN]: 82434.70
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 4.00
< B_pt [m]: 19.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 7235.995
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 6.10
< D_pt [m]: 6.30
< B_pt [m]: 19.7

Qv_SQC_fun: < — BEGIN
< D [m]: 6.30
< B_eq [m]: 19.7

ZTOP_sq_fun: < — BEGIN
< D [m]: 6.30
ZTOP_sq_fun [m bsf]: 6.30
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 6.30
T_sq [m]: 0.300
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.300
b_sq [-]: 0.330
B_eq [m]: 19.7
T_sq/b_sq [m]: 0.909
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 6.30
B_eq [m]: 19.7
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.320
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1956395.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 6.30
< B_eq [m]: 19.7
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 6.30
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 236.
D [m]: 6.30
z_top_first_CLAY_layer_aboveD [m bsf]: 6.30
sum = su0 – rho_av*D [kPa]: 236.
sum_modified = max(sum,0) [kPa]: 236.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 19.7
lambda = D/B_eq [-]: 0.320
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.76
su0 * Nc0 [kPa]: 0.159E+04
p0 [kPa]: 64.1
su0*Nc0 + p0 [kPa]: 0.166E+04
pi * B_eq * B_eq /4 [m^2]: 304.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 503866.1
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 26.5
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 1956395.
> Qv_fmode_pt :SQC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 6.10
< B_pt [m]: 19.7
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 6.10
< B_pt [m]: 19.7
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 546.8931
dW_pt_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 6.30
< B_eq [m]: 19.7

ZTOP_sq_fun: < — BEGIN
< D [m]: 6.30
ZTOP_sq_fun [m bsf]: 6.30
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 6.30
T_sq [m]: 0.300
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.300
b_sq [-]: 0.330
B_eq [m]: 19.7
T_sq/b_sq [m]: 0.909
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 6.30
B_eq [m]: 19.7
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.320
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1956395.
Qv_SQC_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 6.30
< B_eq [m]: 17.2

ZTOP_sq_fun: < — BEGIN
< D [m]: 6.30
ZTOP_sq_fun [m bsf]: 6.30
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 6.30
T_sq [m]: 0.300
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.300
b_sq [-]: 0.330
B_eq [m]: 17.2
T_sq/b_sq [m]: 0.909
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 6.30
B_eq [m]: 17.2
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.366
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1350652.
Qv_SQC_fun: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 6.10
< B_pt [m]: 17.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 6.10
< B_pt [m]: 17.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 418.3096
dW_pt_fun: END — >

D, D_pt [m]: 6.10 6.30
D_pt layer # [-]: 9
Qv_Fmode_PT [-]:PTS>SQC
decreasing dW for punch-through layer#[-]: 8
using B_eq (was B_pt), B_eq , B_pt [m]: 17.2 19.7
(B_eq/B_pt)^2 [-]: 0.765
old dW, new dW [kN]: 547. 418.
old Qv_SQC, new Qv_SQC (ie Q_ub) [kN]: 0.196E+07 0.135E+07

Q_ub_sub: < — BEGIN
< D [m]: 6.30
< D_pt [m]: 6.60
< B_pt [m]: 19.7

Qv_GSS_fun: < — BEGIN
< D [m]: 6.60
< B_eq [m]: 19.7

phi_av_fun: < — BEGIN
< z1 [m]: 6.60
phi_av [rad]: 0.523
> phi_av/deg [deg]: 30.0
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 9.18
phi_rad_av [rad]: 0.523
phi_rad_av/deg [deg]: 30.0
N_gamma [-]: 15.4
N_q [-]: 37.0
d_gamma [-]: 1.00
d_q [-]: 1.09
p0 [kPa]: 67.5
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.422E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.830E+06
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 1252710.
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 27.2
> Q_ub [kN]: 1252710.
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 6.30
< B_pt [m]: 19.7
Rs_pt [kN]: 12329.12
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 6.30
< B_pt [m]: 19.7
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1047.874
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 6.60
< D_pt [m]: 7.00
< B_pt [m]: 19.9

Qv_SQC_fun: < — BEGIN
< D [m]: 7.00
< B_eq [m]: 19.9

ZTOP_sq_fun: < — BEGIN
< D [m]: 7.00
ZTOP_sq_fun [m bsf]: 7.00
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 7.00
T_sq [m]: 0.900
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.900
b_sq [-]: 0.330
B_eq [m]: 19.9
T_sq/b_sq [m]: 2.73
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 7.00
B_eq [m]: 19.9
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.351
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 903214.2
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 7.00
< B_eq [m]: 19.9
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 7.00
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 189.
D [m]: 7.00
z_top_first_CLAY_layer_aboveD [m bsf]: 7.00
sum = su0 – rho_av*D [kPa]: 189.
sum_modified = max(sum,0) [kPa]: 189.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 19.9
lambda = D/B_eq [-]: 0.351
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.80
su0 * Nc0 [kPa]: 0.129E+04
p0 [kPa]: 71.2
su0*Nc0 + p0 [kPa]: 0.136E+04
pi * B_eq * B_eq /4 [m^2]: 312.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 423546.5
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 27.2
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 903214.2
> Qv_fmode_pt :SQC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 6.60
< B_pt [m]: 19.9
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 6.60
< B_pt [m]: 19.9
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1123.527
dW_pt_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 7.00
< B_eq [m]: 19.9

ZTOP_sq_fun: < — BEGIN
< D [m]: 7.00
ZTOP_sq_fun [m bsf]: 7.00
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 7.00
T_sq [m]: 0.900
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.900
b_sq [-]: 0.330
B_eq [m]: 19.9
T_sq/b_sq [m]: 2.73
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 7.00
B_eq [m]: 19.9
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.351
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 903214.2
Qv_SQC_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 7.00
< B_eq [m]: 17.2

ZTOP_sq_fun: < — BEGIN
< D [m]: 7.00
ZTOP_sq_fun [m bsf]: 7.00
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 7.00
T_sq [m]: 0.900
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.900
b_sq [-]: 0.330
B_eq [m]: 17.2
T_sq/b_sq [m]: 2.73
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 7.00
B_eq [m]: 17.2
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.407
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 624301.6
Qv_SQC_fun: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 6.60
< B_pt [m]: 17.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 6.60
< B_pt [m]: 17.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 836.5284
dW_pt_fun: END — >

D, D_pt [m]: 6.60 7.00
D_pt layer # [-]: 11
Qv_Fmode_PT [-]:PTS>SQC
decreasing dW for punch-through layer#[-]: 10
using B_eq (was B_pt), B_eq , B_pt [m]: 17.2 19.9
(B_eq/B_pt)^2 [-]: 0.745
old dW, new dW [kN]: 0.112E+04 837.
old Qv_SQC, new Qv_SQC (ie Q_ub) [kN]: 0.903E+06 0.624E+06

Q_ub_sub: < — BEGIN
< D [m]: 7.00
< D_pt [m]: 7.40
< B_pt [m]: 19.9

Qv_SQC_fun: < — BEGIN
< D [m]: 7.40
< B_eq [m]: 19.9

ZTOP_sq_fun: < — BEGIN
< D [m]: 7.40
ZTOP_sq_fun [m bsf]: 7.00
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 7.40
T_sq [m]: 0.500
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.500
b_sq [-]: 0.330
B_eq [m]: 19.9
T_sq/b_sq [m]: 1.52
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 7.00
B_eq [m]: 19.9
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.351
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1463013.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 7.40
< B_eq [m]: 19.9
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 7.40
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 248.
D [m]: 7.40
z_top_first_CLAY_layer_aboveD [m bsf]: 7.00
sum = su0 – rho_av*D [kPa]: 248.
sum_modified = max(sum,0) [kPa]: 248.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 19.9
lambda = D/B_eq [-]: 0.371
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.84
su0 * Nc0 [kPa]: 0.170E+04
p0 [kPa]: 75.0
su0*Nc0 + p0 [kPa]: 0.177E+04
pi * B_eq * B_eq /4 [m^2]: 312.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 552405.9
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 1463013.
> Qv_fmode_pt :SQC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 7.00
< B_pt [m]: 19.9
Rs_pt [kN]: 3551.412
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 7.00
< B_pt [m]: 19.9
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1185.860
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 7.40
< D_pt [m]: 7.90
< B_pt [m]: 19.9

Qv_GSS_fun: < — BEGIN
< D [m]: 7.90
< B_eq [m]: 19.9

phi_av_fun: < — BEGIN
< z1 [m]: 7.90
phi_av [rad]: 0.540
> phi_av/deg [deg]: 30.9
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 9.09
phi_rad_av [rad]: 0.540
phi_rad_av/deg [deg]: 30.9
N_gamma [-]: 18.5
N_q [-]: 42.7
d_gamma [-]: 1.00
d_q [-]: 1.11
p0 [kPa]: 79.7
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.524E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.117E+07
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 1698380.
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 25.3
> Q_ub [kN]: 1698380.
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 7.40
< B_pt [m]: 19.9
Rs_pt [kN]: 21108.77
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 7.40
< B_pt [m]: 19.9
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1482.223
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 7.90
< D_pt [m]: 8.60
< B_pt [m]: 20.4

Qv_SQC_fun: < — BEGIN
< D [m]: 8.60
< B_eq [m]: 20.4

ZTOP_sq_fun: < — BEGIN
< D [m]: 8.60
ZTOP_sq_fun [m bsf]: 8.60
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 8.60
T_sq [m]: 0.900
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.900
b_sq [-]: 0.330
B_eq [m]: 20.4
T_sq/b_sq [m]: 2.73
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.60
B_eq [m]: 20.4
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.422
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1267697.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 8.60
< B_eq [m]: 20.4
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 8.60
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 317.
D [m]: 8.60
z_top_first_CLAY_layer_aboveD [m bsf]: 8.60
sum = su0 – rho_av*D [kPa]: 317.
sum_modified = max(sum,0) [kPa]: 317.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 20.4
lambda = D/B_eq [-]: 0.422
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.91
su0 * Nc0 [kPa]: 0.219E+04
p0 [kPa]: 86.0
su0*Nc0 + p0 [kPa]: 0.228E+04
pi * B_eq * B_eq /4 [m^2]: 327.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 744238.4
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 25.3
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 1267697.
> Qv_fmode_pt :SQC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 7.90
< B_pt [m]: 20.4
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 7.90
< B_pt [m]: 20.4
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2059.312
dW_pt_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 8.60
< B_eq [m]: 20.4

ZTOP_sq_fun: < — BEGIN
< D [m]: 8.60
ZTOP_sq_fun [m bsf]: 8.60
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 8.60
T_sq [m]: 0.900
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.900
b_sq [-]: 0.330
B_eq [m]: 20.4
T_sq/b_sq [m]: 2.73
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.60
B_eq [m]: 20.4
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.422
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1267697.
Qv_SQC_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 8.60
< B_eq [m]: 17.2

ZTOP_sq_fun: < — BEGIN
< D [m]: 8.60
ZTOP_sq_fun [m bsf]: 8.60
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 8.60
T_sq [m]: 0.900
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.900
b_sq [-]: 0.330
B_eq [m]: 17.2
T_sq/b_sq [m]: 2.73
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.60
B_eq [m]: 17.2
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.500
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 827947.1
Qv_SQC_fun: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 7.90
< B_pt [m]: 17.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 7.90
< B_pt [m]: 17.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1463.925
dW_pt_fun: END — >

D, D_pt [m]: 7.90 8.60
D_pt layer # [-]: 14
Qv_Fmode_PT [-]:PTS>SQC
decreasing dW for punch-through layer#[-]: 13
using B_eq (was B_pt), B_eq , B_pt [m]: 17.2 20.4
(B_eq/B_pt)^2 [-]: 0.711
old dW, new dW [kN]: 0.206E+04 0.146E+04
old Qv_SQC, new Qv_SQC (ie Q_ub) [kN]: 0.127E+07 0.828E+06

Q_ub_sub: < — BEGIN
< D [m]: 8.60
< D_pt [m]: 9.20
< B_pt [m]: 20.4

Qv_SQC_fun: < — BEGIN
< D [m]: 9.20
< B_eq [m]: 20.4

ZTOP_sq_fun: < — BEGIN
< D [m]: 9.20
ZTOP_sq_fun [m bsf]: 8.60
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 9.20
T_sq [m]: 0.300
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.300
b_sq [-]: 0.330
B_eq [m]: 20.4
T_sq/b_sq [m]: 0.909
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.60
B_eq [m]: 20.4
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.422
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 2243228.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 9.20
< B_eq [m]: 20.4
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 9.20
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 242.
D [m]: 9.20
z_top_first_CLAY_layer_aboveD [m bsf]: 8.60
sum = su0 – rho_av*D [kPa]: 242.
sum_modified = max(sum,0) [kPa]: 242.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 20.4
lambda = D/B_eq [-]: 0.451
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.96
su0 * Nc0 [kPa]: 0.168E+04
p0 [kPa]: 91.7
su0*Nc0 + p0 [kPa]: 0.177E+04
pi * B_eq * B_eq /4 [m^2]: 327.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 580133.8
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 2243228.
> Qv_fmode_pt :SQC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 8.60
< B_pt [m]: 20.4
Rs_pt [kN]: 9140.815
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 8.60
< B_pt [m]: 20.4
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1863.052
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 9.20
< D_pt [m]: 9.50
< B_pt [m]: 20.4

Qv_GSS_fun: < — BEGIN
< D [m]: 9.50
< B_eq [m]: 20.4

phi_av_fun: < — BEGIN
< z1 [m]: 9.50
phi_av [rad]: 0.559
> phi_av/deg [deg]: 32.0
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 9.00
phi_rad_av [rad]: 0.559
phi_rad_av/deg [deg]: 32.0
N_gamma [-]: 22.9
N_q [-]: 50.3
d_gamma [-]: 1.00
d_q [-]: 1.12
p0 [kPa]: 94.6
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.687E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.174E+07
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 2428665.
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 32.0
> Q_ub [kN]: 2428665.
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 9.20
< B_pt [m]: 20.4
Rs_pt [kN]: 12875.31
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 9.20
< B_pt [m]: 20.4
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 931.4624
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 9.50
< D_pt [m]: 11.5
< B_pt [m]: 21.7

Qv_GSS_fun: < — BEGIN
< D [m]: 11.5
< B_eq [m]: 21.7

phi_av_fun: < — BEGIN
< z1 [m]: 11.5
phi_av [rad]: 0.559
> phi_av/deg [deg]: 32.0
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 8.99
phi_rad_av [rad]: 0.559
phi_rad_av/deg [deg]: 32.0
N_gamma [-]: 22.9
N_q [-]: 50.3
d_gamma [-]: 1.00
d_q [-]: 1.13
p0 [kPa]: 113.
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.830E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.238E+07
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 3212329.
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 32.0
phi_lay_deg2 [deg]: 32.0
> Q_ub [kN]: 3212329.
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 9.50
< B_pt [m]: 21.7
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 9.50
< B_pt [m]: 21.7
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 6677.518
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 11.5
< D_pt [m]: 12.8
< B_pt [m]: 22.6

Qv_GSS_fun: < — BEGIN
< D [m]: 12.8
< B_eq [m]: 22.6

phi_av_fun: < — BEGIN
< z1 [m]: 12.8
phi_av [rad]: 0.559
> phi_av/deg [deg]: 32.0
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 8.72
phi_rad_av [rad]: 0.559
phi_rad_av/deg [deg]: 32.0
N_gamma [-]: 22.9
N_q [-]: 50.3
d_gamma [-]: 1.00
d_q [-]: 1.14
p0 [kPa]: 124.
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.905E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.286E+07
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 3768675.
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 32.0
phi_lay_deg2 [deg]: 32.0
> Q_ub [kN]: 3768675.
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 11.5
< B_pt [m]: 22.6
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 11.5
< B_pt [m]: 22.6
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 4693.455
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 12.8
< D_pt [m]: 14.3
< B_pt [m]: 23.6

Qv_GSS_fun: < — BEGIN
< D [m]: 14.3
< B_eq [m]: 23.6

phi_av_fun: < — BEGIN
< z1 [m]: 14.3
phi_av [rad]: 0.559
> phi_av/deg [deg]: 32.0
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 8.43
phi_rad_av [rad]: 0.559
phi_rad_av/deg [deg]: 32.0
N_gamma [-]: 22.9
N_q [-]: 50.3
d_gamma [-]: 1.00
d_q [-]: 1.15
p0 [kPa]: 138.
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.997E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.349E+07
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 4483627.
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 32.0
phi_lay_deg2 [deg]: 32.0
> Q_ub [kN]: 4483627.
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 12.8
< B_pt [m]: 23.6
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 12.8
< B_pt [m]: 23.6
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 5905.377
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 14.3
< D_pt [m]: 15.0
< B_pt [m]: 24.1

Qv_GSS_fun: < — BEGIN
< D [m]: 15.0
< B_eq [m]: 24.1

phi_av_fun: < — BEGIN
< z1 [m]: 15.0
phi_av [rad]: 0.559
> phi_av/deg [deg]: 32.0
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 8.31
phi_rad_av [rad]: 0.559
phi_rad_av/deg [deg]: 32.0
N_gamma [-]: 22.9
N_q [-]: 50.3
d_gamma [-]: 1.00
d_q [-]: 1.15
p0 [kPa]: 144.
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.104E+07
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.380E+07
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 4845476.
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 32.0
phi_lay_deg2 [deg]: 32.0
> Q_ub [kN]: 4845476.
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 14.3
< B_pt [m]: 24.1
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 14.3
< B_pt [m]: 24.1
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2865.908
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 15.0
< D_pt [m]: 15.5
< B_pt [m]: 24.4

Qv_SQC_fun: < — BEGIN
< D [m]: 15.5
< B_eq [m]: 24.4

ZTOP_sq_fun: < — BEGIN
< D [m]: 15.5
ZTOP_sq_fun [m bsf]: 15.5
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 15.5
T_sq [m]: 0.500
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.500
b_sq [-]: 0.330
B_eq [m]: 24.4
T_sq/b_sq [m]: 1.52
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 15.5
B_eq [m]: 24.4
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.635
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 4363777.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 15.5
< B_eq [m]: 24.4
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 15.5
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 420.
D [m]: 15.5
z_top_first_CLAY_layer_aboveD [m bsf]: 15.5
sum = su0 – rho_av*D [kPa]: 420.
sum_modified = max(sum,0) [kPa]: 420.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.4
lambda = D/B_eq [-]: 0.635
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.22
su0 * Nc0 [kPa]: 0.303E+04
p0 [kPa]: 149.
su0*Nc0 + p0 [kPa]: 0.318E+04
pi * B_eq * B_eq /4 [m^2]: 468.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 1487090.
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 32.0
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 4363777.
> Qv_fmode_pt :SQC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 15.0
< B_pt [m]: 24.4
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 15.0
< B_pt [m]: 24.4
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2104.328
dW_pt_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 15.5
< B_eq [m]: 24.4

ZTOP_sq_fun: < — BEGIN
< D [m]: 15.5
ZTOP_sq_fun [m bsf]: 15.5
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 15.5
T_sq [m]: 0.500
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.500
b_sq [-]: 0.330
B_eq [m]: 24.4
T_sq/b_sq [m]: 1.52
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 15.5
B_eq [m]: 24.4
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.635
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 4363777.
Qv_SQC_fun: END — >

Qv_SQC_fun: < — BEGIN
< D [m]: 15.5
< B_eq [m]: 17.2

ZTOP_sq_fun: < — BEGIN
< D [m]: 15.5
ZTOP_sq_fun [m bsf]: 15.5
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 15.5
T_sq [m]: 0.500
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.500
b_sq [-]: 0.330
B_eq [m]: 17.2
T_sq/b_sq [m]: 1.52
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 15.5
B_eq [m]: 17.2
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.901
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1735805.
Qv_SQC_fun: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 15.0
< B_pt [m]: 17.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 15.0
< B_pt [m]: 17.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1045.661
dW_pt_fun: END — >

D, D_pt [m]: 15.0 15.5
D_pt layer # [-]: 21
Qv_Fmode_PT [-]:PTS>SQC
decreasing dW for punch-through layer#[-]: 20
using B_eq (was B_pt), B_eq , B_pt [m]: 17.2 24.4
(B_eq/B_pt)^2 [-]: 0.497
old dW, new dW [kN]: 0.210E+04 0.105E+04
old Qv_SQC, new Qv_SQC (ie Q_ub) [kN]: 0.436E+07 0.174E+07

Q_ub_sub: < — BEGIN
< D [m]: 15.5
< D_pt [m]: 16.0
< B_pt [m]: 24.4

Qv_GSS_fun: < — BEGIN
< D [m]: 16.0
< B_eq [m]: 24.4

phi_av_fun: < — BEGIN
< z1 [m]: 16.0
phi_av [rad]: 0.559
> phi_av/deg [deg]: 32.0
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 8.10
phi_rad_av [rad]: 0.559
phi_rad_av/deg [deg]: 32.0
N_gamma [-]: 22.9
N_q [-]: 50.3
d_gamma [-]: 1.00
d_q [-]: 1.16
p0 [kPa]: 153.
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.106E+07
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.418E+07
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 5241476.
Qv_GSS_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 32.0
> Q_ub [kN]: 5241476.
> Qv_fmode_pt :GSS
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 15.5
< B_pt [m]: 24.4
Rs_pt [kN]: 30779.85
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 15.5
< B_pt [m]: 24.4
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2220.922
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 16.0
< D_pt [m]: 16.6
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 16.6
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 16.6
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 16.6
T_sq [m]: 14.8
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 14.8
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 44.8
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 16.6
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 16.6
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 112.
D [m]: 16.6
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 112.
sum_modified = max(sum,0) [kPa]: 112.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 0.669
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.27
su0 * Nc0 [kPa]: 814.
p0 [kPa]: 159.
su0*Nc0 + p0 [kPa]: 972.
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 469717.6
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 32.0
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 469717.6
> Qv_fmode_pt :GSC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 16.0
< B_pt [m]: 24.8
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 16.0
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2608.288
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 16.6
< D_pt [m]: 19.0
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 19.0
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 19.0
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 19.0
T_sq [m]: 14.5
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 14.5
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 43.9
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 19.0
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 19.0
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 120.
D [m]: 19.0
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 120.
sum_modified = max(sum,0) [kPa]: 120.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 0.766
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.39
su0 * Nc0 [kPa]: 887.
p0 [kPa]: 178.
su0*Nc0 + p0 [kPa]: 0.107E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 514572.0
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 514572.0
> Qv_fmode_pt :GSC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 16.6
< B_pt [m]: 24.8
Rs_pt [kN]: 15708.42
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 16.6
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 9274.585
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 19.0
< D_pt [m]: 20.4
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 20.4
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 20.4
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 20.4
T_sq [m]: 13.1
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 13.1
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 39.7
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 20.4
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 20.4
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 133.
D [m]: 20.4
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 133.
sum_modified = max(sum,0) [kPa]: 133.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 0.823
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.47
su0 * Nc0 [kPa]: 993.
p0 [kPa]: 189.
su0*Nc0 + p0 [kPa]: 0.118E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 571142.7
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 571142.7
> Qv_fmode_pt :GSC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 19.0
< B_pt [m]: 24.8
Rs_pt [kN]: 9817.541
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 19.0
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 5410.174
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 20.4
< D_pt [m]: 21.5
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 21.5
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 21.5
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 21.5
T_sq [m]: 14.5
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 14.5
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 43.9
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 21.5
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 21.5
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 119.
D [m]: 21.5
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 119.
sum_modified = max(sum,0) [kPa]: 119.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 0.867
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.52
su0 * Nc0 [kPa]: 895.
p0 [kPa]: 198.
su0*Nc0 + p0 [kPa]: 0.109E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 528154.6
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 528154.6
> Qv_fmode_pt :GSC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 20.4
< B_pt [m]: 24.8
Rs_pt [kN]: 8548.253
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 20.4
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 4250.851
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 21.5
< D_pt [m]: 22.5
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 22.5
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 22.5
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 22.5
T_sq [m]: 13.5
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 13.5
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 40.9
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 22.5
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 22.5
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 134.
D [m]: 22.5
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 134.
sum_modified = max(sum,0) [kPa]: 134.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 0.907
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.58
su0 * Nc0 [kPa]: 0.102E+04
p0 [kPa]: 206.
su0*Nc0 + p0 [kPa]: 0.122E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 589840.9
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 589840.9
> Qv_fmode_pt :GSC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 21.5
< B_pt [m]: 24.8
Rs_pt [kN]: 6954.172
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 21.5
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 3864.410
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 22.5
< D_pt [m]: 23.7
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 23.7
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 23.7
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 23.7
T_sq [m]: 12.3
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 12.3
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 37.3
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 23.7
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 23.7
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 121.
D [m]: 23.7
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 121.
sum_modified = max(sum,0) [kPa]: 121.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 0.956
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.64
su0 * Nc0 [kPa]: 924.
p0 [kPa]: 215.
su0*Nc0 + p0 [kPa]: 0.114E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 550426.9
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 550426.9
> Qv_fmode_pt :GSC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 22.5
< B_pt [m]: 24.8
Rs_pt [kN]: 9395.533
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 22.5
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 4637.292
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 23.7
< D_pt [m]: 24.1
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 24.1
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 24.1
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 24.1
T_sq [m]: 11.9
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 11.9
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 36.1
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 24.1
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 24.1
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 136.
D [m]: 24.1
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 136.
sum_modified = max(sum,0) [kPa]: 136.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 0.972
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.66
su0 * Nc0 [kPa]: 0.104E+04
p0 [kPa]: 219.
su0*Nc0 + p0 [kPa]: 0.126E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 608609.3
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 608609.3
> Qv_fmode_pt :GSC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 23.7
< B_pt [m]: 24.8
Rs_pt [kN]: 2828.416
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 23.7
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1545.764
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 24.1
< D_pt [m]: 28.6
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 28.6
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 28.6
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 28.6
T_sq [m]: 7.40
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 7.40
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 22.4
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 620812.0
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 28.6
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 28.6
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 141.
D [m]: 28.6
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 141.
sum_modified = max(sum,0) [kPa]: 141.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 1.15
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.87
su0 * Nc0 [kPa]: 0.111E+04
p0 [kPa]: 255.
su0*Nc0 + p0 [kPa]: 0.136E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 659283.0
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 659283.0
> Qv_fmode_pt :GSC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 24.1
< B_pt [m]: 24.8
Rs_pt [kN]: 35764.80
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 24.1
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 17389.85
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 28.6
< D_pt [m]: 31.4
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 31.4
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 31.4
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 31.4
T_sq [m]: 4.60
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 4.60
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 13.9
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 677263.3
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 31.4
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 31.4
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 129.
D [m]: 31.4
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 129.
sum_modified = max(sum,0) [kPa]: 129.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 1.27
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 8.00
su0 * Nc0 [kPa]: 0.103E+04
p0 [kPa]: 277.
su0*Nc0 + p0 [kPa]: 0.131E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 632534.5
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 677263.3
> Qv_fmode_pt :SQC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 28.6
< B_pt [m]: 24.8
Rs_pt [kN]: 23068.32
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 28.6
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 10820.35
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 31.4
< D_pt [m]: 33.5
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 33.5
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 33.5
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 33.5
T_sq [m]: 2.50
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 2.50
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 7.58
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 815924.3
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 33.5
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 33.5
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 141.
D [m]: 33.5
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 141.
sum_modified = max(sum,0) [kPa]: 141.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 1.35
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 8.10
su0 * Nc0 [kPa]: 0.114E+04
p0 [kPa]: 294.
su0*Nc0 + p0 [kPa]: 0.144E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 693477.1
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 815924.3
> Qv_fmode_pt :SQC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 31.4
< B_pt [m]: 24.8
Rs_pt [kN]: 15830.63
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 31.4
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 8115.262
dW_pt_fun: END — >

Q_ub_sub: < — BEGIN
< D [m]: 33.5
< D_pt [m]: 36.0
< B_pt [m]: 24.8

Qv_SQC_fun: < — BEGIN
< D [m]: 36.0
< B_eq [m]: 24.8

ZTOP_sq_fun: < — BEGIN
< D [m]: 36.0
ZTOP_sq_fun [m bsf]: 16.6
ZTOP_sq_fun: END — >

T_sq_fun: < — BEGIN
< D [m]: 36.0
T_sq [m]: 0.100E-02
T_sq_fun: END — >

is_D_clay [t/f]: T
T_sq [m]: 0.100E-02
b_sq [-]: 0.330
B_eq [m]: 24.8
T_sq/b_sq [m]: 0.303E-02
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 16.6
B_eq [m]: 24.8
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.669
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 0.6015470E+09
Qv_SQC_fun: END — >

Qv_GSC_fun: < — BEGIN
< D [m bsf]: 36.0
< B_eq [m]: 24.8
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.

rho_av_fun: < — BEGIN
< D [m]: 36.0
rho_av [kPa/m]: 0.00
rho_av_fun: END — >

is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 152.
D [m]: 36.0
z_top_first_CLAY_layer_aboveD [m bsf]: 16.6
sum = su0 – rho_av*D [kPa]: 152.
sum_modified = max(sum,0) [kPa]: 152.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 24.8
lambda = D/B_eq [-]: 1.45
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 8.21
su0 * Nc0 [kPa]: 0.125E+04
p0 [kPa]: 314.
su0*Nc0 + p0 [kPa]: 0.156E+04
pi * B_eq * B_eq /4 [m^2]: 483.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 754227.1
Qv_GSC_fun: END — >

phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 754227.1
> Qv_fmode_pt :GSC
Q_ub_sub: END — >

Rs_pt_fun: < — BEGIN
< D [m]: 33.5
< B_pt [m]: 24.8
Rs_pt [kN]: 20598.90
Rs_pt_fun: END — >

dW_pt_fun: < — BEGIN
< D [m]: 33.5
< B_pt [m]: 24.8
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 9661.026
dW_pt_fun: END — >

< z_tip_verify [m]: 3.00
D [m]: 0.500
B_eq [m]: 17.2
lay_num (D) [-]: 2
is_D_clay [t/f]: F

Qv_GSS, ISO 19905-1 Equation A.9.3-8,
GSS general shear resistance in SAND [kN]: 360570.1 *
Qv_GSC, ISO 19905-1 Equation A.9.3-7,
GSC general shear resistance in CLAY [kN]: 1000000.
Qv_SQC, ISO 19905-1 Equation A.9.3-10,
SQC squeezing resistance in CLAY [kN]: 1000000.
Qv_D_clay, GSC or SQC in CLAY [kN]: 1000000.
Qub_D, GROSS resistance (GSS, GSC/SQC) [kN]: 360570.1
Qv_fmode, failure mode : 'GSS'

Qv_GSS_fun: < — BEGIN
< D [m]: 0.500
< B_eq [m]: 17.2

phi_av_fun: < — BEGIN
< z1 [m]: 0.500
phi_av [rad]: 0.527
> phi_av/deg [deg]: 30.2
phi_av_fun : END — >

is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 9.87
phi_rad_av [rad]: 0.527
phi_rad_av/deg [deg]: 30.2
N_gamma [-]: 16.1
N_q [-]: 38.2
d_gamma [-]: 1.00
d_q [-]: 1.01
p0 [kPa]: 4.90
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.317E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.439E+05
Qv_GSS = gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8 + p0*d_q*N_q*pi*B_eq*B_eq/4
> Qv_GSS [kN]: 360570.1
Qv_GSS_fun: END — >

V_L, spudcan GROSS ultimate bearing resistance at foundation depth D ——:

D_B_eq_sub: < — BEGIN
D [m]: 0.500
> B_eq [m]: 17.2
D_B_eq_sub: END — >

H_cav_fun: < — BEGIN
< D [m]: 0.500
< B_eq [m]: 17.2
< I_BF [-]: 1

< D_top_first_SAND_layer [m]: 0.00
H_cav, ISO 19905-1 Eq. 9.3-3 [m]: 0.500
H_cav_fun: END — >

B_S_fun: < — BEGIN
< z_tip [m]: 3.00

D_B_eq_sub: < — BEGIN
D [m]: 0.500
> B_eq [m]: 17.2
D_B_eq_sub: END — >

z1 [m]: 3.00
z2 [m]: 0.500
gamma_sub_av [kN/m^3]: 9.50
V_D [kN]: 215.
> B_S = gamma_sub_av*V_D [kN]: 2039.231
B_S_fun: END — >

W_BF_fun: < — BEGIN
< z_tip [m]: 3.00
< I_BF [-]: 1

D_B_eq_sub: < — BEGIN
D [m]: 0.500
> B_eq [m]: 17.2
D_B_eq_sub: END — >

gamma_sub_av [kN/m^3]: 9.80
A [m^2]: 232.
H_cav [m]: 0.500
V_spud [m^3]: 215.
V_D [m^3]: 215.
W_BF = gamma_sub_av [ A (D – H_cav) – (V_spud – V_D ) ]
> W_BF [kN]: 0.1000000E-02
W_BF_fun: END — >

—————————————–
H_CAV, ISO 19905-1 Eq.A.9.3-3,
cavity depth [m bsf]: 0.500
V_SPUD, ISO 19905-1 Fig.A.9.3-6, row1,
spudcan total volume BENEATH BACKFILL [m^3]: 215.
V_D, ISO 19905-1 Fig.A.9.3-6, row2,
spudcan total volume BELOW MAXIMUM BEARING AREA [m^3]: 215.
W_BF, ISO 19905-1 Eq.A.9.3-2,
backfill weight due to backflow,
W_BF = gamma [A (D – H_CAV) – (V_SPUD – V_D)] [kN]: 0.1000000E-02

QV_DPT, spudcan NETT resistance at depth D [kN]: 360570.1
B_S, soil buoyancy of spudcan BELOW MAXIMUM BEARING AREA [kN]: 2039.231
i.e. soil submerged weight displaced by spudcan below D [D is MAX AREA].
W_BF, backfill weight due to backflow [kN]: 0.1000000E-02
> V_L, spudcan GROSS ultimate bearing resistance
ie V_L = QV_DPT – W_BF + B_S [kN]: 362609.3

ioutd_z_tip_verify: END — >

soil_mat_adjust: < — BEGIN
< z_tip [m]: 3.00
< i_sqc [-]: 1
PTS>PTS>PTS>PTS>SQC
3.30 0.800 17.2 383150.3 385189.6 PTS>PTS>PTS>PTS>PTS>SQC
3.40 0.900 17.2 390755.6 392794.9 PTS>PTS>PTS>PTS>PTS>SQC
3.50 1.00 17.2 399139.9 401179.1 PTS>PTS>PTS>PTS>PTS>SQC
3.60 1.10 17.2 408440.5 410479.8 PTS>PTS>PTS>PTS>PTS>SQC
3.70 1.20 17.2 418829.5 420868.7 PTS>PTS>PTS>PTS>PTS>SQC
3.80 1.30 17.2 430524.3 432563.5 PTS>PTS>PTS>PTS>PTS>SQC
3.90 1.40 17.2 443804.8 445844.1 PTS>PTS>PTS>PTS>PTS>SQC
4.00 1.50 17.2 459037.1 461076.3 PTS>PTS>PTS>PTS>PTS>SQC
4.10 1.60 17.2 469319.6 471358.9 GSS
4.20 1.70 17.2 473791.9 475831.1 PTS>PTS>PTS>PTS>GSS
4.30 1.80 17.2 470098.5 472137.8 PTS>PTS>PTS>PTS>GSS
4.40 1.90 17.2 466615.8 468655.1 PTS>PTS>PTS>PTS>GSS
4.50 2.00 17.2 463184.6 465223.8 PTS>PTS>PTS>PTS>GSS
4.60 2.10 17.2 459437.7 461477.0 PTS>PTS>PTS>PTS>GSS
4.70 2.20 17.2 455935.0 457974.2 PTS>PTS>PTS>PTS>GSS
4.80 2.30 17.2 452261.6 454300.8 PTS>PTS>PTS>PTS>GSS
4.90 2.40 17.2 448741.1 450780.6 PTS>PTS>PTS>PTS>GSS
5.00 2.50 17.2 445163.7 447219.9 PTS>PTS>PTS>GSS
5.10 2.60 17.2 441627.3 443700.4 PTS>PTS>PTS>GSS
5.20 2.70 17.2 438107.5 440198.5 PTS>PTS>PTS>GSS
5.30 2.80 17.2 434534.2 436641.9 PTS>PTS>PTS>GSS
5.40 2.90 17.2 431233.4 433358.4 PTS>PTS>PTS>GSS
5.50 3.00 17.2 427773.4 429915.2 PTS>PTS>GSS
5.60 3.10 17.2 424261.8 426421.5 PTS>PTS>GSS
5.70 3.20 17.2 420902.2 423078.7 PTS>PTS>GSS
5.80 3.30 17.2 417513.1 419706.8 PTS>PTS>GSS
5.90 3.40 17.2 413997.3 416207.8 PTS>PTS>GSS
6.00 3.50 17.2 410706.0 412934.4 PTS>PTS>GSS
6.10 3.60 17.2 407300.4 409545.3 PTS>PTS>GSS
6.20 3.70 17.2 404070.7 406311.9 PTS>PTS>GSS
6.30 3.80 17.2 400603.3 402840.7 PTS>GSS
6.40 3.90 17.2 397268.8 399522.6 PTS>GSS
6.50 4.00 17.2 394083.7 396354.4 PTS>GSS
6.60 4.10 17.2 390730.1 393018.4 PTS>GSS
6.70 4.20 17.2 387384.1 389668.2 PTS>GSS
6.80 4.30 17.2 384144.8 386425.1 PTS>GSS
6.90 4.40 17.2 380940.7 383215.4 GSS
7.00 4.50 17.2 386941.1 389213.0 GSS
7.10 4.60 17.2 393058.6 395329.8 GSS
7.20 4.70 17.2 398612.5 400884.1 GSS
7.30 4.80 17.2 404268.6 406539.2 GSS
7.40 4.90 17.2 467403.8 469675.3 PTC>PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
7.50 5.00 17.2 464403.1 466657.2 PTC>PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
7.60 5.10 17.2 461402.3 463639.0 PTC>PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
7.70 5.20 17.2 458401.6 460620.4 PTC>PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
7.80 5.30 17.2 455400.9 457603.6 PTC>PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
7.90 5.40 17.2 452400.2 454585.5 PTC>PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
8.00 5.50 17.2 449399.5 451563.1 PTC>PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
8.10 5.60 17.2 446398.7 448540.3 PTC>PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
8.20 5.70 17.2 443398.0 445519.1 PTC>PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
8.30 5.80 17.2 440397.3 442494.8 PTC>PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
8.40 5.90 17.2 437396.6 439474.3 PTC>PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
8.50 6.00 17.2 434395.9 436451.5 PTC>PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
8.60 6.10 17.2 431395.1 433430.7 PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
8.70 6.20 17.2 429515.9 431553.9 PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
8.80 6.30 17.2 427637.7 429641.2 PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
8.90 6.40 17.2 424493.9 426519.9 PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
9.00 6.50 17.2 421350.1 423359.0 PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
9.10 6.60 17.2 418206.3 420198.4 PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
9.20 6.70 17.2 416363.0 418359.1 PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
9.30 6.80 17.2 414520.8 416521.4 PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
9.40 6.90 17.2 412679.9 414684.7 PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
9.50 7.00 17.2 410840.1 412849.3 PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
9.60 7.10 17.2 410437.3 412442.1 PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
9.70 7.20 17.2 410034.5 412035.1 PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
9.80 7.30 17.2 409631.8 411627.9 PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
9.90 7.40 17.2 409229.0 411221.0 PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
10.0 7.50 17.2 405949.4 407936.8 PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
10.1 7.60 17.2 402669.9 404653.5 PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
10.2 7.70 17.2 399390.3 401369.3 PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
10.3 7.80 17.2 396110.7 398085.6 PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
10.4 7.90 17.2 392831.2 394803.3 PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
10.5 8.00 17.2 391055.4 393027.6 PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
10.6 8.10 17.2 389280.9 391251.4 PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
10.7 8.20 17.2 387507.8 389478.4 PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
10.8 8.30 17.2 385736.0 387708.1 PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
10.9 8.40 17.2 383965.5 385937.7 PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
11.0 8.50 17.2 382196.5 384166.9 PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
11.1 8.60 17.2 380428.8 382399.4 PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
11.2 8.70 17.2 379492.4 381458.6 PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
11.3 8.80 17.2 378556.1 380518.0 PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
11.4 8.90 17.2 377619.7 379577.2 PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
11.5 9.00 17.2 376683.3 378636.9 PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
11.6 9.10 17.2 375746.9 377695.7 PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
11.7 9.20 17.2 374810.5 376755.4 PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
11.8 9.30 17.2 371540.1 373480.5 PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
11.9 9.40 17.2 368269.6 370205.8 PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
12.0 9.50 17.2 364999.1 366931.0 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
12.1 9.60 17.2 363285.5 365217.4 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
12.2 9.70 17.2 361573.4 363505.3 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
12.3 9.80 17.2 359862.8 361794.7 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
12.4 9.90 17.2 358153.7 360085.6 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
12.5 10.0 17.2 356446.2 358378.1 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
12.6 10.1 17.2 354740.2 356672.1 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
12.7 10.2 17.2 353035.9 354967.8 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
12.8 10.3 17.2 351333.1 353265.1 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
12.9 10.4 17.2 349632.0 351563.9 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
13.0 10.5 17.2 347932.6 349864.5 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
13.1 10.6 17.2 346234.8 348166.7 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
13.2 10.7 17.2 344538.7 346470.6 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
13.3 10.8 17.2 342844.3 344776.2 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
13.4 10.9 17.2 341151.7 343083.6 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
13.5 11.0 17.2 339460.7 341392.6 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
13.6 11.1 17.2 337771.6 339703.5 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
13.7 11.2 17.2 336084.2 338016.1 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
13.8 11.3 17.2 334398.7 336330.6 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
13.9 11.4 17.2 332714.9 334646.8 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
14.0 11.5 17.2 331033.0 332964.9 PTS>PTS>PTS>PTS>PTC>PTS>GSC
14.1 11.6 17.2 329353.0 331284.9 PTS>PTS>PTS>PTS>PTC>PTS>GSC
14.2 11.7 17.2 327674.8 329606.7 PTS>PTS>PTS>PTS>PTC>PTS>GSC
14.3 11.8 17.2 325998.6 327930.5 PTS>PTS>PTS>PTS>PTC>PTS>GSC
14.4 11.9 17.2 324324.2 326256.1 PTS>PTS>PTS>PTS>PTC>PTS>GSC
14.5 12.0 17.2 322651.8 324583.7 PTS>PTS>PTS>PTS>PTC>PTS>GSC
14.6 12.1 17.2 320981.4 322913.3 PTS>PTS>PTS>PTS>PTC>PTS>GSC
14.7 12.2 17.2 319312.9 321244.8 PTS>PTS>PTS>PTS>PTC>PTS>GSC
14.8 12.3 17.2 317646.4 319578.3 PTS>PTS>PTS>PTS>PTC>PTS>GSC
14.9 12.4 17.2 315982.0 317913.9 PTS>PTS>PTS>PTS>PTC>PTS>GSC
15.0 12.5 17.2 314319.6 316251.5 PTS>PTS>PTS>PTS>PTC>PTS>GSC
15.1 12.6 17.2 312659.2 314591.1 PTS>PTS>PTS>PTS>PTC>PTS>GSC
15.2 12.7 17.2 311000.9 312932.8 PTS>PTS>PTS>PTS>PTC>PTS>GSC
15.3 12.8 17.2 309344.7 311276.6 PTS>PTS>PTS>PTC>PTS>GSC
15.4 12.9 17.2 307690.5 309622.5 PTS>PTS>PTS>PTC>PTS>GSC
15.5 13.0 17.2 306038.6 307970.6 PTS>PTS>PTS>PTC>PTS>GSC
15.6 13.1 17.2 304388.7 306324.9 PTS>PTS>PTS>PTC>PTS>GSC
15.7 13.2 17.2 302741.1 304681.5 PTS>PTS>PTS>PTC>PTS>GSC
15.8 13.3 17.2 301095.6 303040.4 PTS>PTS>PTS>PTC>PTS>GSC
15.9 13.4 17.2 299452.3 301401.1 PTS>PTS>PTS>PTC>PTS>GSC
16.0 13.5 17.2 297811.3 299763.3 PTS>PTS>PTS>PTC>PTS>GSC
16.1 13.6 17.2 296172.5 298125.8 PTS>PTS>PTS>PTC>PTS>GSC
16.2 13.7 17.2 294535.9 296488.0 PTS>PTS>PTS>PTC>PTS>GSC
16.3 13.8 17.2 292901.7 294860.4 PTS>PTS>PTS>PTC>PTS>GSC
16.4 13.9 17.2 291269.7 293223.4 PTS>PTS>PTS>PTC>PTS>GSC
16.5 14.0 17.2 289640.1 291593.4 PTS>PTS>PTS>PTC>PTS>GSC
16.6 14.1 17.2 288012.8 289962.6 PTS>PTS>PTS>PTC>PTS>GSC
16.7 14.2 17.2 286387.9 288333.2 PTS>PTS>PTS>PTC>PTS>GSC
16.8 14.3 17.2 284765.3 286701.8 PTS>PTS>PTC>PTS>GSC
16.9 14.4 17.2 283145.1 285072.6 PTS>PTS>PTC>PTS>GSC
17.0 14.5 17.2 281527.4 283445.9 PTS>PTS>PTC>PTS>GSC
17.1 14.6 17.2 279912.1 281822.2 PTS>PTS>PTC>PTS>GSC
17.2 14.7 17.2 278299.2 280199.8 PTS>PTS>PTC>PTS>GSC
17.3 14.8 17.2 276688.8 278582.7 PTS>PTS>PTC>PTS>GSC
17.4 14.9 17.2 275080.9 276965.9 PTS>PTS>PTC>PTS>GSC
17.5 15.0 17.2 273475.5 275349.3 PTS>PTC>PTS>GSC
17.6 15.1 17.2 271872.7 273742.0 PTS>PTC>PTS>GSC
17.7 15.2 17.2 270272.4 272130.5 PTS>PTC>PTS>GSC
17.8 15.3 17.2 268674.7 270521.6 PTS>PTC>PTS>GSC
17.9 15.4 17.2 267079.6 268922.0 PTS>PTC>PTS>GSC
18.0 15.5 17.2 265487.1 267320.2 PTC>PTS>GSC
18.1 15.6 17.2 261378.7 263198.8 PTC>PTS>GSC
18.2 15.7 17.2 257270.4 259077.8 PTC>PTS>GSC
18.3 15.8 17.2 253162.0 254956.3 PTC>PTS>GSC
18.4 15.9 17.2 249053.7 250835.3 PTC>PTS>GSC
18.5 16.0 17.2 244945.3 246713.9 PTS>GSC
18.6 16.1 17.2 243430.8 245190.9 PTS>GSC
18.7 16.2 17.2 241918.9 243670.4 PTS>GSC
18.8 16.3 17.2 240409.7 242152.8 PTS>GSC
18.9 16.4 17.2 238903.2 240637.4 PTS>GSC
19.0 16.5 17.2 237399.5 239125.3 PTS>GSC
19.1 16.6 17.2 228110.5 229827.7 GSC
19.2 16.7 17.2 228470.7 230187.9 GSC
19.3 16.8 17.2 228830.6 230547.8 GSC
19.4 16.9 17.2 229190.1 230907.4 GSC
19.5 17.0 17.2 229549.4 231266.6 GSC
19.6 17.1 17.2 229908.3 231625.6 GSC
19.7 17.2 17.2 230267.0 231984.2 GSC
19.8 17.3 17.2 230625.3 232342.6 GSC
19.9 17.4 17.2 230983.3 232700.6 GSC
20.0 17.5 17.2 231341.1 233058.3 GSC
20.1 17.6 17.2 231698.5 233415.7 GSC
20.2 17.7 17.2 232055.6 233772.8 GSC
20.3 17.8 17.2 232412.4 234129.7 GSC
20.4 17.9 17.2 232768.9 234486.2 GSC
20.5 18.0 17.2 233125.1 234842.4 GSC
20.6 18.1 17.2 233481.1 235198.3 GSC
20.7 18.2 17.2 233836.7 235553.9 GSC
20.8 18.3 17.2 234192.0 235909.3 GSC
20.9 18.4 17.2 234547.1 236264.3 GSC
21.0 18.5 17.2 234901.8 236619.1 GSC
21.1 18.6 17.2 235256.3 236973.5 GSC
21.2 18.7 17.2 235610.4 237327.7 GSC
21.3 18.8 17.2 235964.3 237681.6 GSC
21.4 18.9 17.2 236317.9 238035.2 GSC
21.5 19.0 17.2 250623.8 252341.0 GSC
21.6 19.1 17.2 250988.7 252706.0 GSC
21.7 19.2 17.2 251353.4 253070.6 GSC
21.8 19.3 17.2 251717.8 253435.0 GSC
21.9 19.4 17.2 252081.8 253799.1 GSC
22.0 19.5 17.2 252445.6 254162.8 GSC
22.1 19.6 17.2 252809.0 254526.3 GSC
22.2 19.7 17.2 253172.2 254889.4 GSC
22.3 19.8 17.2 253535.1 255252.3 GSC
22.4 19.9 17.2 253897.6 255614.9 GSC
22.5 20.0 17.2 254259.9 255977.2 GSC
22.6 20.1 17.2 254621.9 256339.2 GSC
22.7 20.2 17.2 254983.6 256700.9 GSC
22.8 20.3 17.2 255345.0 257062.3 GSC
22.9 20.4 17.2 270637.4 272354.7 PTC>GSC
23.0 20.5 17.2 270284.3 272001.6 PTC>GSC
23.1 20.6 17.2 269931.2 271648.5 PTC>GSC
23.2 20.7 17.2 269578.2 271295.4 PTC>GSC
23.3 20.8 17.2 269225.1 270942.3 PTC>GSC
23.4 20.9 17.2 268872.0 270589.2 PTC>GSC
23.5 21.0 17.2 268518.9 270236.1 PTC>GSC
23.6 21.1 17.2 268165.8 269883.1 PTC>GSC
23.7 21.2 17.2 267812.7 269530.0 PTC>GSC
23.8 21.3 17.2 267459.6 269176.9 PTC>GSC
23.9 21.4 17.2 267106.6 268823.8 PTC>GSC
24.0 21.5 17.2 257879.1 259596.4 GSC
24.1 21.6 17.2 258235.4 259952.7 GSC
24.2 21.7 17.2 258591.5 260308.7 GSC
24.3 21.8 17.2 258947.3 260664.5 GSC
24.4 21.9 17.2 259302.8 261020.0 GSC
24.5 22.0 17.2 259658.0 261375.3 GSC
24.6 22.1 17.2 260013.0 261730.2 GSC
24.7 22.2 17.2 260367.7 262084.9 GSC
24.8 22.3 17.2 260722.1 262439.4 GSC
24.9 22.4 17.2 261076.3 262793.6 GSC
25.0 22.5 17.2 282847.8 284565.0 PTC>GSC
25.1 22.6 17.2 282490.6 284207.9 PTC>GSC
25.2 22.7 17.2 282133.5 283850.7 PTC>GSC
25.3 22.8 17.2 281776.4 283493.6 PTC>GSC
25.4 22.9 17.2 281419.2 283136.5 PTC>GSC
25.5 23.0 17.2 281062.1 282779.3 PTC>GSC
25.6 23.1 17.2 280704.9 282422.2 PTC>GSC
25.7 23.2 17.2 280347.8 282065.0 PTC>GSC
25.8 23.3 17.2 279990.7 281707.9 PTC>GSC
25.9 23.4 17.2 279633.5 281350.8 PTC>GSC
26.0 23.5 17.2 279276.4 280993.6 PTC>GSC
26.1 23.6 17.2 278919.2 280636.5 PTC>GSC
26.2 23.7 17.2 269280.4 270997.6 GSC
26.3 23.8 17.2 269633.7 271351.0 GSC
26.4 23.9 17.2 269986.8 271704.1 GSC
26.5 24.0 17.2 270339.7 272056.9 GSC
26.6 24.1 17.2 297949.8 299667.0 GSC
26.7 24.2 17.2 298322.7 300040.0 GSC
26.8 24.3 17.2 298695.4 300412.7 GSC
26.9 24.4 17.2 299067.9 300785.1 GSC
27.0 24.5 17.2 299440.0 301157.3 GSC
27.1 24.6 17.2 299811.9 301529.1 GSC
27.2 24.7 17.2 300183.5 301900.7 GSC
27.3 24.8 17.2 300554.8 302272.1 GSC
27.4 24.9 17.2 300925.9 302643.1 GSC
27.5 25.0 17.2 301296.6 303013.9 GSC
27.6 25.1 17.2 301667.1 303384.4 GSC
27.7 25.2 17.2 302037.4 303754.6 GSC
27.8 25.3 17.2 302407.3 304124.6 GSC
27.9 25.4 17.2 302777.0 304494.3 GSC
28.0 25.5 17.2 303146.5 304863.7 GSC
28.1 25.6 17.2 303515.6 305232.9 GSC
28.2 25.7 17.2 303884.5 305601.7 GSC
28.3 25.8 17.2 304253.1 305970.4 GSC
28.4 25.9 17.2 304621.5 306338.7 GSC
28.5 26.0 17.2 304989.6 306706.8 GSC
28.6 26.1 17.2 305357.4 307074.7 GSC
28.7 26.2 17.2 305725.0 307442.2 GSC
28.8 26.3 17.2 306092.3 307809.6 GSC
28.9 26.4 17.2 306459.4 308176.6 GSC
29.0 26.5 17.2 306826.2 308543.4 GSC
29.1 26.6 17.2 307192.7 308909.9 GSC
29.2 26.7 17.2 307559.0 309276.2 GSC
29.3 26.8 17.2 307925.0 309642.3 GSC
29.4 26.9 17.2 308290.8 310008.0 GSC
29.5 27.0 17.2 308656.3 310373.5 GSC
29.6 27.1 17.2 309021.6 310738.8 GSC
29.7 27.2 17.2 309386.6 311103.8 GSC
29.8 27.3 17.2 309751.3 311468.6 GSC
29.9 27.4 17.2 310115.8 311833.1 GSC
30.0 27.5 17.2 310480.1 312197.3 GSC
30.1 27.6 17.2 310844.1 312561.4 GSC
30.2 27.7 17.2 311207.9 312925.1 GSC
30.3 27.8 17.2 311571.4 313288.6 GSC
30.4 27.9 17.2 311934.7 313651.9 GSC
30.5 28.0 17.2 312297.7 314014.9 GSC
30.6 28.1 17.2 312660.5 314377.7 GSC
30.7 28.2 17.2 313023.0 314740.2 GSC
30.8 28.3 17.2 313385.3 315102.5 GSC
30.9 28.4 17.2 313747.3 315464.6 GSC
31.0 28.5 17.2 314109.2 315826.4 GSC
31.1 28.6 17.2 323856.4 325573.7 GSC
31.2 28.7 17.2 324224.2 325941.4 GSC
31.3 28.8 17.2 324591.7 326309.0 GSC
31.4 28.9 17.2 324959.0 326676.3 GSC
31.5 29.0 17.2 325326.1 327043.3 GSC
31.6 29.1 17.2 325692.9 327410.1 GSC
31.7 29.2 17.2 326059.4 327776.7 GSC
31.8 29.3 17.2 326425.7 328143.0 GSC
31.9 29.4 17.2 326791.8 328509.0 GSC
32.0 29.5 17.2 327157.6 328874.9 GSC
32.1 29.6 17.2 327523.2 329240.4 GSC
32.2 29.7 17.2 327888.5 329605.8 GSC
32.3 29.8 17.2 328253.7 329970.9 GSC
32.4 29.9 17.2 328618.5 330335.8 GSC
32.5 30.0 17.2 328983.1 330700.4 GSC
32.6 30.1 17.2 329347.5 331064.8 GSC
32.7 30.2 17.2 329711.7 331428.9 GSC
32.8 30.3 17.2 330075.6 331792.9 GSC
32.9 30.4 17.2 330439.3 332156.6 GSC
33.0 30.5 17.2 330802.8 332520.0 GSC
33.1 30.6 17.2 331166.0 332883.2 GSC
33.2 30.7 17.2 331529.0 333246.2 GSC
33.3 30.8 17.2 331891.7 333609.0 GSC
33.4 30.9 17.2 331670.2 333387.5 PTC>SQC
33.5 31.0 17.2 332616.6 334333.8 GSC
33.6 31.1 17.2 332554.1 334271.3 PTC>SQC
33.7 31.2 17.2 333340.5 335057.7 GSC
33.8 31.3 17.2 333477.1 335194.4 PTC>SQC
33.9 31.4 17.2 334063.5 335780.7 GSC
34.0 31.5 17.2 334424.6 336141.9 GSC
34.1 31.6 17.2 334056.7 335773.9 PTC>SQC
34.2 31.7 17.2 335146.3 336863.5 GSC
34.3 31.8 17.2 335066.7 336784.0 SQC
34.4 31.9 17.2 336877.9 338595.1 SQC
34.5 32.0 17.2 338604.4 340321.7 SQC
34.6 32.1 17.2 340506.4 342223.6 SQC
34.7 32.2 17.2 343055.4 344772.6 SQC
34.8 32.3 17.2 344742.8 346460.1 SQC
34.9 32.4 17.2 346746.0 348463.2 SQC
35.0 32.5 17.2 349127.8 350845.0 SQC
35.1 32.6 17.2 351444.8 353162.0 SQC
35.2 32.7 17.2 353988.2 355705.4 SQC
35.3 32.8 17.2 356765.4 358482.6 SQC
35.4 32.9 17.2 359782.6 361499.9 SQC
35.5 33.0 17.2 362470.3 364187.6 SQC
35.6 33.1 17.2 365613.4 367330.7 SQC
35.7 33.2 17.2 369052.4 370769.6 SQC
35.8 33.3 17.2 373403.0 375120.2 SQC
35.9 33.4 17.2 376560.8 378278.0 SQC
36.0 33.5 17.2 380746.0 382463.2 SQC
36.1 33.6 17.2 385291.3 387008.6 SQC
36.2 33.7 17.2 390322.7 392039.9 SQC
36.3 33.8 17.2 393885.1 395602.3 PTC>GSC
36.4 33.9 17.2 393499.5 395216.8 PTC>GSC
36.5 34.0 17.2 393113.9 394831.2 PTC>GSC
36.6 34.1 17.2 392728.4 394445.6 PTC>GSC
36.7 34.2 17.2 392342.8 394060.0 PTC>GSC
36.8 34.3 17.2 391957.2 393674.5 PTC>GSC
36.9 34.4 17.2 391571.6 393288.9 PTC>GSC
37.0 34.5 17.2 391186.1 392903.3 PTC>GSC
37.1 34.6 17.2 390800.5 392517.8 PTC>GSC
37.2 34.7 17.2 390414.9 392132.2 PTC>GSC
37.3 34.8 17.2 390029.4 391746.6 PTC>GSC
37.4 34.9 17.2 389643.8 391361.0 PTC>GSC
37.5 35.0 17.2 389258.2 390975.5 PTC>GSC
37.6 35.1 17.2 388872.6 390589.9 PTC>GSC
37.7 35.2 17.2 388487.1 390204.3 PTC>GSC
37.8 35.3 17.2 388101.5 389818.8 PTC>GSC
37.9 35.4 17.2 387715.9 389433.2 PTC>GSC
38.0 35.5 17.2 387330.4 389047.6 PTC>GSC
38.1 35.6 17.2 386944.8 388662.0 PTC>GSC
38.2 35.7 17.2 386559.2 388276.5 PTC>GSC
38.3 35.8 17.2 386173.6 387890.9 PTC>GSC
38.4 35.9 17.2 385788.1 387505.3 PTC>GSC
38.5 36.0 17.2 372104.2 373821.5 GSC
38.6 36.1 17.2 372468.6 374185.9 GSC
38.7 36.2 17.2 372832.8 374550.1 GSC
38.8 36.3 17.2 373196.8 374914.1 GSC
38.9 36.4 17.2 373560.6 375277.8 GSC
39.0 36.5 17.2 373924.2 375641.4 GSC
39.1 36.6 17.2 374287.5 376004.8 GSC
39.2 36.7 17.2 374650.7 376367.9 GSC
39.3 36.8 17.2 375013.6 376730.9 GSC
39.4 36.9 17.2 375376.4 377093.6 GSC
39.5 37.0 17.2 375738.9 377456.1 GSC
39.6 37.1 17.2 376101.2 377818.5 GSC
39.7 37.2 17.2 376463.3 378180.6 GSC
39.8 37.3 17.2 376825.3 378542.5 GSC
39.9 37.4 17.2 377187.0 378904.2 GSC
40.0 37.5 17.2 377548.5 379265.7 GSC
40.1 37.6 17.2 377909.8 379627.0 GSC
40.2 37.7 17.2 378270.9 379988.1 GSC
——————————————————————-
z_tip D B_eq Qv_Dpt V_L Qv_fmode
[m] [m] [m] [kN] [kN]
——————————————————————-

out_sp_pen_sub: PTS>PTS>PTS>PTS>SQC
4.10 4.20 1.60 1.70 0.100 GSS
4.20 5.00 1.70 2.50 0.800 PTS>PTS>PTS>PTS>GSS
5.00 5.50 2.50 3.00 0.500 PTS>PTS>PTS>GSS
5.50 6.30 3.00 3.80 0.800 PTS>PTS>GSS
6.30 6.90 3.80 4.40 0.600 PTS>GSS
6.90 7.40 4.40 4.90 0.500 GSS
7.40 8.60 4.90 6.10 1.20 PTC>PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
8.60 8.80 6.10 6.30 0.200 PTS>PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
8.80 9.10 6.30 6.60 0.300 PTC>PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
9.10 9.50 6.60 7.00 0.400 PTS>PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
9.50 9.90 7.00 7.40 0.400 PTC>PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
9.90 10.4 7.40 7.90 0.500 PTC>PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
10.4 11.1 7.90 8.60 0.700 PTS>PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
11.1 11.7 8.60 9.20 0.600 PTC>PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
11.7 12.0 9.20 9.50 0.300 PTC>PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
12.0 14.0 9.50 11.5 2.00 PTS>PTS>PTS>PTS>PTS>PTC>PTS>GSC
14.0 15.3 11.5 12.8 1.30 PTS>PTS>PTS>PTS>PTC>PTS>GSC
15.3 16.8 12.8 14.3 1.50 PTS>PTS>PTS>PTC>PTS>GSC
16.8 17.5 14.3 15.0 0.700 PTS>PTS>PTC>PTS>GSC
17.5 18.0 15.0 15.5 0.500 PTS>PTC>PTS>GSC
18.0 18.5 15.5 16.0 0.500 PTC>PTS>GSC
18.5 19.1 16.0 16.6 0.600 PTS>GSC
19.1 22.9 16.6 20.4 3.80 GSC
22.9 24.0 20.4 21.5 1.10 PTC>GSC
24.0 25.0 21.5 22.5 1.00 GSC
25.0 26.2 22.5 23.7 1.20 PTC>GSC
26.2 33.4 23.7 30.9 7.20 GSC
33.4 33.5 30.9 31.0 0.100 PTC>SQC
33.5 33.6 31.0 31.1 0.100 GSC
33.6 33.7 31.1 31.2 0.100 PTC>SQC
33.7 33.8 31.2 31.3 0.100 GSC
33.8 33.9 31.3 31.4 0.100 PTC>SQC
33.9 34.1 31.4 31.6 0.200 GSC
34.1 34.2 31.6 31.7 0.100 PTC>SQC
34.2 34.3 31.7 31.8 0.100 GSC
34.3 36.3 31.8 33.8 2.00 SQC
36.3 38.5 33.8 36.0 2.20 PTC>GSC
38.5 40.2 36.0 37.7 1.70 GSC
——————————————————————-
from to from to thickness
z_tip z_tip D D T Qv_fmode
[m] [m] [m] [m] [m] [-]
——————————————————————-

iso_19905_1: nlines_errors : 0
iso_19905_1: nlines_warnings: 9

WARNING. gmdata: number of soil layers NUMSL > 20 [?simplify ground model].
WARNING. gmdata: soil layer # 1; BDEN=10.00 kN/m^3 is inconsistent with PHI=25.10 degrees.
WARNING. gmdata: soil layer # 2; BDEN=9.50 kN/m^3 is inconsistent with PHI=27.70 degrees.
WARNING. gmdata: soil layer # 3; BDEN=9.50 kN/m^3 is inconsistent with PHI=28.90 degrees.
WARNING. gmdata: soil layer # 7; BDEN=9.50 kN/m^3 is inconsistent with PHI=26.30 degrees.
WARNING. gmdata: soil layer # 8; SU_TOP, SIGV=38.15 kPa; PSI=SU/SIGV=5.29 is outside typical range [0.15 – 4].
WARNING. spfdat: spudcan volume V_SPUDCAN=551 m^3 is outside typical range [30 – 500].
WARNING. spfdat: maximum spudcan preload P_SPUD=221000.00 kN is outside typical range [10e3 – 100e3].
WARNING. spfdat: number of soil layers NUMSL > 10 in top 1.5B [?simplify ground model].

z_tip_penetration [m]: 2.28
out_sp_pen_sub: END — >

input file: “JOB.I01”
output file: “JOB.O01”
iso_19905_1: normal program end