p r o g r a m I S O _ 1 9 9 0 5 _ 1 w32 version 00.11
———————————— at 19:17:30 on 16-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]: 10.0
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]: 0.504
> phi_av/deg [deg]: 28.9
phi_av_fun : END — >
is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 11.5
phi_rad_av [rad]: 0.504
phi_rad_av/deg [deg]: 28.9
N_gamma [-]: 12.5
N_q [-]: 31.6
d_gamma [-]: 1.00
d_q [-]: 1.01
p0 [kPa]: 5.00
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.286E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.370E+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]: 323329.8
Qv_GSS_fun: END — >
phi_lay_deg1 [deg]: 25.9
phi_lay_deg2 [deg]: 25.9
> Q_ub [kN]: 323329.8
> 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]: 0.509
> phi_av/deg [deg]: 29.2
phi_av_fun : END — >
is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 11.5
phi_rad_av [rad]: 0.509
phi_rad_av/deg [deg]: 29.2
N_gamma [-]: 13.3
N_q [-]: 33.0
d_gamma [-]: 1.00
d_q [-]: 1.01
p0 [kPa]: 6.00
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.309E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.469E+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]: 355818.5
Qv_GSS_fun: END — >
phi_lay_deg1 [deg]: 25.9
phi_lay_deg2 [deg]: 32.0
> Q_ub [kN]: 355818.5
> 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]: 234.1569
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 0.600
< D_pt [m]: 1.10
< B_pt [m]: 17.6
Qv_SQC_fun: < — BEGIN
< D [m]: 1.10
< B_eq [m]: 17.6
ZTOP_sq_fun: < — BEGIN
< D [m]: 1.10
ZTOP_sq_fun [m bsf]: 1.10
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 1.10
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]: 17.6
T_sq/b_sq [m]: 1.52
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 1.10
B_eq [m]: 17.6
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.625E-01
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 603853.4
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 1.10
< B_eq [m]: 17.6
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 1.10
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 148.
D [m]: 1.10
z_top_first_CLAY_layer_aboveD [m bsf]: 1.10
sum = su0 – rho_av*D [kPa]: 148.
sum_modified = max(sum,0) [kPa]: 148.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 17.6
lambda = D/B_eq [-]: 0.625E-01
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.33
su0 * Nc0 [kPa]: 937.
p0 [kPa]: 11.0
su0*Nc0 + p0 [kPa]: 948.
pi * B_eq * B_eq /4 [m^2]: 243.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 230516.0
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 32.0
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 603853.4
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 0.600
< B_pt [m]: 17.6
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 0.600
< B_pt [m]: 17.6
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1216.583
dW_pt_fun: END — >
Qv_SQC_fun: < — BEGIN
< D [m]: 1.10
< B_eq [m]: 17.6
ZTOP_sq_fun: < — BEGIN
< D [m]: 1.10
ZTOP_sq_fun [m bsf]: 1.10
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 1.10
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]: 17.6
T_sq/b_sq [m]: 1.52
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 1.10
B_eq [m]: 17.6
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.625E-01
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 603853.4
Qv_SQC_fun: END — >
Qv_SQC_fun: < — BEGIN
< D [m]: 1.10
< B_eq [m]: 17.2
ZTOP_sq_fun: < — BEGIN
< D [m]: 1.10
ZTOP_sq_fun [m bsf]: 1.10
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 1.10
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]: 1.10
B_eq [m]: 17.2
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.640E-01
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 567696.0
Qv_SQC_fun: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 0.600
< B_pt [m]: 17.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 0.600
< B_pt [m]: 17.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1161.912
dW_pt_fun: END — >
D, D_pt [m]: 0.600 1.10
D_pt layer # [-]: 3
Qv_Fmode_PT [-]:PTS>SQC
decreasing dW for punch-through layer#[-]: 2
using B_eq (was B_pt), B_eq , B_pt [m]: 17.2 17.6
(B_eq/B_pt)^2 [-]: 0.955
old dW, new dW [kN]: 0.122E+04 0.116E+04
old Qv_SQC, new Qv_SQC (ie Q_ub) [kN]: 0.604E+06 0.568E+06
Q_ub_sub: < — BEGIN
< D [m]: 1.10
< D_pt [m]: 1.60
< B_pt [m]: 17.6
Qv_SQC_fun: < — BEGIN
< D [m]: 1.60
< B_eq [m]: 17.6
ZTOP_sq_fun: < — BEGIN
< D [m]: 1.60
ZTOP_sq_fun [m bsf]: 1.10
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 1.60
T_sq [m]: 1.00
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 1.00
b_sq [-]: 0.330
B_eq [m]: 17.6
T_sq/b_sq [m]: 3.03
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 1.10
B_eq [m]: 17.6
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.625E-01
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 596415.8
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 1.60
< B_eq [m]: 17.6
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 1.60
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 223.
D [m]: 1.60
z_top_first_CLAY_layer_aboveD [m bsf]: 1.10
sum = su0 – rho_av*D [kPa]: 223.
sum_modified = max(sum,0) [kPa]: 223.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 17.6
lambda = D/B_eq [-]: 0.909E-01
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.38
su0 * Nc0 [kPa]: 0.142E+04
p0 [kPa]: 17.0
su0*Nc0 + p0 [kPa]: 0.144E+04
pi * B_eq * B_eq /4 [m^2]: 243.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 350147.6
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 596415.8
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 1.10
< B_pt [m]: 17.6
Rs_pt [kN]: 3069.720
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 1.10
< B_pt [m]: 17.6
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1459.710
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 1.60
< D_pt [m]: 2.60
< B_pt [m]: 17.6
Qv_GSS_fun: < — BEGIN
< D [m]: 2.60
< B_eq [m]: 17.6
phi_av_fun: < — BEGIN
< z1 [m]: 2.60
phi_av [rad]: 0.482
> phi_av/deg [deg]: 27.6
phi_av_fun : END — >
is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 11.3
phi_rad_av [rad]: 0.482
phi_rad_av/deg [deg]: 27.6
N_gamma [-]: 9.96
N_q [-]: 26.6
d_gamma [-]: 1.00
d_q [-]: 1.04
p0 [kPa]: 29.0
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.241E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.196E+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]: 436752.7
Qv_GSS_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 25.4
> Q_ub [kN]: 436752.7
> Qv_fmode_pt :GSS
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 1.60
< B_pt [m]: 17.6
Rs_pt [kN]: 36239.63
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 1.60
< B_pt [m]: 17.6
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2919.023
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 2.60
< D_pt [m]: 3.00
< B_pt [m]: 17.9
Qv_SQC_fun: < — BEGIN
< D [m]: 3.00
< B_eq [m]: 17.9
ZTOP_sq_fun: < — BEGIN
< D [m]: 3.00
ZTOP_sq_fun [m bsf]: 3.00
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 3.00
T_sq [m]: 2.60
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 2.60
b_sq [-]: 0.330
B_eq [m]: 17.9
T_sq/b_sq [m]: 7.88
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 3.00
B_eq [m]: 17.9
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.168
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 471151.2
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 3.00
< B_eq [m]: 17.9
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 3.00
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 225.
D [m]: 3.00
z_top_first_CLAY_layer_aboveD [m bsf]: 3.00
sum = su0 – rho_av*D [kPa]: 225.
sum_modified = max(sum,0) [kPa]: 225.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 17.9
lambda = D/B_eq [-]: 0.168
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.51
su0 * Nc0 [kPa]: 0.146E+04
p0 [kPa]: 32.8
su0*Nc0 + p0 [kPa]: 0.150E+04
pi * B_eq * B_eq /4 [m^2]: 251.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 375438.2
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 25.4
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 471151.2
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 2.60
< B_pt [m]: 17.9
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 2.60
< B_pt [m]: 17.9
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 952.8728
dW_pt_fun: END — >
Qv_SQC_fun: < — BEGIN
< D [m]: 3.00
< B_eq [m]: 17.9
ZTOP_sq_fun: < — BEGIN
< D [m]: 3.00
ZTOP_sq_fun [m bsf]: 3.00
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 3.00
T_sq [m]: 2.60
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 2.60
b_sq [-]: 0.330
B_eq [m]: 17.9
T_sq/b_sq [m]: 7.88
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 3.00
B_eq [m]: 17.9
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.168
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 471151.2
Qv_SQC_fun: END — >
Qv_SQC_fun: < — BEGIN
< D [m]: 3.00
< B_eq [m]: 17.2
ZTOP_sq_fun: < — BEGIN
< D [m]: 3.00
ZTOP_sq_fun [m bsf]: 3.00
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 3.00
T_sq [m]: 2.60
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 2.60
b_sq [-]: 0.330
B_eq [m]: 17.2
T_sq/b_sq [m]: 7.88
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 3.00
B_eq [m]: 17.2
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.174
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 432235.0
Qv_SQC_fun: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 2.60
< B_pt [m]: 17.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 2.60
< B_pt [m]: 17.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 883.0896
dW_pt_fun: END — >
D, D_pt [m]: 2.60 3.00
D_pt layer # [-]: 6
Qv_Fmode_PT [-]:PTS>SQC
decreasing dW for punch-through layer#[-]: 5
using B_eq (was B_pt), B_eq , B_pt [m]: 17.2 17.9
(B_eq/B_pt)^2 [-]: 0.927
old dW, new dW [kN]: 953. 883.
old Qv_SQC, new Qv_SQC (ie Q_ub) [kN]: 0.471E+06 0.432E+06
Q_ub_sub: < — BEGIN
< D [m]: 3.00
< D_pt [m]: 4.00
< B_pt [m]: 17.9
Qv_SQC_fun: < — BEGIN
< D [m]: 4.00
< B_eq [m]: 17.9
ZTOP_sq_fun: < — BEGIN
< D [m]: 4.00
ZTOP_sq_fun [m bsf]: 3.00
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 4.00
T_sq [m]: 1.60
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 1.60
b_sq [-]: 0.330
B_eq [m]: 17.9
T_sq/b_sq [m]: 4.85
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 3.00
B_eq [m]: 17.9
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.168
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 596117.4
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 4.00
< B_eq [m]: 17.9
< 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]: 300.
D [m]: 4.00
z_top_first_CLAY_layer_aboveD [m bsf]: 3.00
sum = su0 – rho_av*D [kPa]: 300.
sum_modified = max(sum,0) [kPa]: 300.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 17.9
lambda = D/B_eq [-]: 0.224
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.60
su0 * Nc0 [kPa]: 0.198E+04
p0 [kPa]: 44.8
su0*Nc0 + p0 [kPa]: 0.203E+04
pi * B_eq * B_eq /4 [m^2]: 251.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 507828.7
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 596117.4
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 3.00
< B_pt [m]: 17.9
Rs_pt [kN]: 9473.957
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 3.00
< B_pt [m]: 17.9
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 3008.557
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 4.00
< D_pt [m]: 4.80
< B_pt [m]: 17.9
Qv_SQC_fun: < — BEGIN
< D [m]: 4.80
< B_eq [m]: 17.9
ZTOP_sq_fun: < — BEGIN
< D [m]: 4.80
ZTOP_sq_fun [m bsf]: 3.00
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 4.80
T_sq [m]: 0.800
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 0.800
b_sq [-]: 0.330
B_eq [m]: 17.9
T_sq/b_sq [m]: 2.42
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 3.00
B_eq [m]: 17.9
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.168
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 716893.4
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 4.80
< B_eq [m]: 17.9
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 4.80
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 221.
D [m]: 4.80
z_top_first_CLAY_layer_aboveD [m bsf]: 3.00
sum = su0 – rho_av*D [kPa]: 221.
sum_modified = max(sum,0) [kPa]: 221.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 17.9
lambda = D/B_eq [-]: 0.269
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.67
su0 * Nc0 [kPa]: 0.148E+04
p0 [kPa]: 54.4
su0*Nc0 + p0 [kPa]: 0.153E+04
pi * B_eq * B_eq /4 [m^2]: 251.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 383479.6
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 716893.4
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 4.00
< B_pt [m]: 17.9
Rs_pt [kN]: 10101.63
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 4.00
< B_pt [m]: 17.9
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2406.715
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 4.80
< D_pt [m]: 5.60
< B_pt [m]: 17.9
Qv_GSS_fun: < — BEGIN
< D [m]: 5.60
< B_eq [m]: 17.9
phi_av_fun: < — BEGIN
< z1 [m]: 5.60
phi_av [rad]: 0.478
> phi_av/deg [deg]: 27.4
phi_av_fun : END — >
is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 10.9
phi_rad_av [rad]: 0.478
phi_rad_av/deg [deg]: 27.4
N_gamma [-]: 9.48
N_q [-]: 25.6
d_gamma [-]: 1.00
d_q [-]: 1.09
p0 [kPa]: 63.6
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.232E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.446E+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]: 677867.9
Qv_GSS_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 29.8
> Q_ub [kN]: 677867.9
> Qv_fmode_pt :GSS
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 4.80
< B_pt [m]: 17.9
Rs_pt [kN]: 29363.66
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 4.80
< B_pt [m]: 17.9
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2306.234
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 5.60
< D_pt [m]: 6.00
< B_pt [m]: 18.1
Qv_SQC_fun: < — BEGIN
< D [m]: 6.00
< B_eq [m]: 18.1
ZTOP_sq_fun: < — BEGIN
< D [m]: 6.00
ZTOP_sq_fun [m bsf]: 6.00
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 6.00
T_sq [m]: 1.90
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 1.90
b_sq [-]: 0.330
B_eq [m]: 18.1
T_sq/b_sq [m]: 5.76
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 6.00
B_eq [m]: 18.1
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.331
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 533831.6
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 6.00
< B_eq [m]: 18.1
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 6.00
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 234.
D [m]: 6.00
z_top_first_CLAY_layer_aboveD [m bsf]: 6.00
sum = su0 – rho_av*D [kPa]: 234.
sum_modified = max(sum,0) [kPa]: 234.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.1
lambda = D/B_eq [-]: 0.331
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.77
su0 * Nc0 [kPa]: 0.158E+04
p0 [kPa]: 67.2
su0*Nc0 + p0 [kPa]: 0.165E+04
pi * B_eq * B_eq /4 [m^2]: 258.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 426665.2
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 29.8
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 533831.6
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 5.60
< B_pt [m]: 18.1
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 5.60
< B_pt [m]: 18.1
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 929.8785
dW_pt_fun: END — >
Qv_SQC_fun: < — BEGIN
< D [m]: 6.00
< B_eq [m]: 18.1
ZTOP_sq_fun: < — BEGIN
< D [m]: 6.00
ZTOP_sq_fun [m bsf]: 6.00
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 6.00
T_sq [m]: 1.90
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 1.90
b_sq [-]: 0.330
B_eq [m]: 18.1
T_sq/b_sq [m]: 5.76
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 6.00
B_eq [m]: 18.1
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.331
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 533831.6
Qv_SQC_fun: END — >
Qv_SQC_fun: < — BEGIN
< D [m]: 6.00
< B_eq [m]: 17.2
ZTOP_sq_fun: < — BEGIN
< D [m]: 6.00
ZTOP_sq_fun [m bsf]: 6.00
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 6.00
T_sq [m]: 1.90
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 1.90
b_sq [-]: 0.330
B_eq [m]: 17.2
T_sq/b_sq [m]: 5.76
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 6.00
B_eq [m]: 17.2
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.349
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 472650.3
Qv_SQC_fun: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 5.60
< B_pt [m]: 17.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 5.60
< B_pt [m]: 17.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 836.6192
dW_pt_fun: END — >
D, D_pt [m]: 5.60 6.00
D_pt layer # [-]: 10
Qv_Fmode_PT [-]:PTS>SQC
decreasing dW for punch-through layer#[-]: 9
using B_eq (was B_pt), B_eq , B_pt [m]: 17.2 18.1
(B_eq/B_pt)^2 [-]: 0.900
old dW, new dW [kN]: 930. 837.
old Qv_SQC, new Qv_SQC (ie Q_ub) [kN]: 0.534E+06 0.473E+06
Q_ub_sub: < — BEGIN
< D [m]: 6.00
< D_pt [m]: 7.90
< B_pt [m]: 18.1
Qv_GSS_fun: < — BEGIN
< D [m]: 7.90
< B_eq [m]: 18.1
phi_av_fun: < — BEGIN
< z1 [m]: 7.90
phi_av [rad]: 0.449
> phi_av/deg [deg]: 25.7
phi_av_fun : END — >
is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 9.98
phi_rad_av [rad]: 0.449
phi_rad_av/deg [deg]: 25.7
N_gamma [-]: 6.94
N_q [-]: 20.3
d_gamma [-]: 1.00
d_q [-]: 1.13
p0 [kPa]: 89.0
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.162E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.526E+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]: 688019.7
Qv_GSS_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 25.7
> Q_ub [kN]: 688019.7
> Qv_fmode_pt :GSS
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 6.00
< B_pt [m]: 18.1
Rs_pt [kN]: 71834.21
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 6.00
< B_pt [m]: 18.1
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 5642.027
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 7.90
< D_pt [m]: 8.50
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 8.50
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 8.50
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 8.50
T_sq [m]: 9.50
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 9.50
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 28.8
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 8.50
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 8.50
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 240.
D [m]: 8.50
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 240.
sum_modified = max(sum,0) [kPa]: 240.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 0.459
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.97
su0 * Nc0 [kPa]: 0.167E+04
p0 [kPa]: 94.4
su0*Nc0 + p0 [kPa]: 0.177E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 476544.1
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 25.7
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 476544.1
> Qv_fmode_pt :GSC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 7.90
< B_pt [m]: 18.5
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 7.90
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1457.033
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 8.50
< D_pt [m]: 10.9
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 10.9
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 10.9
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 10.9
T_sq [m]: 10.6
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 10.6
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 32.1
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 10.9
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 10.9
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 99.0
D [m]: 10.9
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 99.0
sum_modified = max(sum,0) [kPa]: 99.0
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 0.588
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.15
su0 * Nc0 [kPa]: 708.
p0 [kPa]: 122.
su0*Nc0 + p0 [kPa]: 830.
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 223962.8
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 223962.8
> Qv_fmode_pt :GSC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 8.50
< B_pt [m]: 18.5
Rs_pt [kN]: 25143.23
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 8.50
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 7444.233
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 10.9
< D_pt [m]: 14.0
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 14.0
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 14.0
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 14.0
T_sq [m]: 7.50
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 7.50
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 22.7
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 14.0
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 14.0
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 111.
D [m]: 14.0
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 111.
sum_modified = max(sum,0) [kPa]: 111.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 0.755
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.38
su0 * Nc0 [kPa]: 819.
p0 [kPa]: 147.
su0*Nc0 + p0 [kPa]: 966.
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 260621.9
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 260621.9
> Qv_fmode_pt :GSC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 10.9
< B_pt [m]: 18.5
Rs_pt [kN]: 13402.81
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 10.9
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 6689.802
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 14.0
< D_pt [m]: 15.6
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 15.6
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 15.6
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 15.6
T_sq [m]: 5.90
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 5.90
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 17.9
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 301166.2
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 15.6
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 15.6
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 114.
D [m]: 15.6
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 114.
sum_modified = max(sum,0) [kPa]: 114.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 0.842
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.49
su0 * Nc0 [kPa]: 854.
p0 [kPa]: 159.
su0*Nc0 + p0 [kPa]: 0.101E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 273286.4
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 301166.2
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 14.0
< B_pt [m]: 18.5
Rs_pt [kN]: 7756.007
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 14.0
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 3237.265
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 15.6
< D_pt [m]: 18.0
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 18.0
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 18.0
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 18.0
T_sq [m]: 3.50
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 3.50
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 10.6
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 369677.3
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 18.0
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 18.0
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 143.
D [m]: 18.0
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 143.
sum_modified = max(sum,0) [kPa]: 143.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 0.971
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]: 0.109E+04
p0 [kPa]: 177.
su0*Nc0 + p0 [kPa]: 0.127E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 343034.7
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 369677.3
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 15.6
< B_pt [m]: 18.5
Rs_pt [kN]: 11949.58
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 15.6
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 4855.897
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 18.0
< D_pt [m]: 19.7
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 19.7
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 19.7
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 19.7
T_sq [m]: 1.80
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 1.80
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 5.45
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 463732.5
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 19.7
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 19.7
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 158.
D [m]: 19.7
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 158.
sum_modified = max(sum,0) [kPa]: 158.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 1.06
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.77
su0 * Nc0 [kPa]: 0.123E+04
p0 [kPa]: 190.
su0*Nc0 + p0 [kPa]: 0.142E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 382195.5
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 463732.5
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 18.0
< B_pt [m]: 18.5
Rs_pt [kN]: 10616.45
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 18.0
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 3439.594
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 19.7
< D_pt [m]: 21.5
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 21.5
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 21.5
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 21.5
T_sq [m]: 5.50
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 5.50
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 16.7
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 695400.3
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 21.5
< B_eq [m]: 18.5
< 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]: 316.
D [m]: 21.5
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 316.
sum_modified = max(sum,0) [kPa]: 316.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 1.16
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.88
su0 * Nc0 [kPa]: 0.249E+04
p0 [kPa]: 203.
su0*Nc0 + p0 [kPa]: 0.269E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 726649.9
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 726649.9
> Qv_fmode_pt :GSC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 19.7
< B_pt [m]: 18.5
Rs_pt [kN]: 12427.30
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 19.7
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 3641.923
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 21.5
< D_pt [m]: 27.0
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 27.0
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 27.0
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 27.0
T_sq [m]: 11.0
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 11.0
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 33.3
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 27.0
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 27.0
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 0.100E+04
D [m]: 27.0
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 0.100E+04
sum_modified = max(sum,0) [kPa]: 0.100E+04
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 1.46
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]: 0.821E+04
p0 [kPa]: 244.
su0*Nc0 + p0 [kPa]: 0.846E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 2281482.
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 2281482.
> Qv_fmode_pt :GSC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 21.5
< B_pt [m]: 18.5
Rs_pt [kN]: 76002.18
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 21.5
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 11131.00
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 27.0
< D_pt [m]: 28.2
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 28.2
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 28.2
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 28.2
T_sq [m]: 9.80
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 9.80
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 29.7
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 28.2
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 28.2
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 0.100E+04
D [m]: 28.2
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 0.100E+04
sum_modified = max(sum,0) [kPa]: 0.100E+04
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 1.52
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 8.28
su0 * Nc0 [kPa]: 0.828E+04
p0 [kPa]: 257.
su0*Nc0 + p0 [kPa]: 0.854E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 2303489.
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 2303489.
> Qv_fmode_pt :GSC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 27.0
< B_pt [m]: 18.5
Rs_pt [kN]: 52401.77
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 27.0
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 3399.128
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 28.2
< D_pt [m]: 32.0
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 32.0
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 32.0
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 32.0
T_sq [m]: 9.10
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 9.10
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 27.6
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 32.0
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 32.0
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 161.
D [m]: 32.0
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 161.
sum_modified = max(sum,0) [kPa]: 161.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 1.73
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 8.49
su0 * Nc0 [kPa]: 0.137E+04
p0 [kPa]: 297.
su0*Nc0 + p0 [kPa]: 0.166E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 448965.3
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 448965.3
> Qv_fmode_pt :GSC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 28.2
< B_pt [m]: 18.5
Rs_pt [kN]: 165848.3
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 28.2
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 10761.57
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 32.0
< D_pt [m]: 35.0
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 35.0
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 35.0
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 35.0
T_sq [m]: 6.10
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 6.10
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 18.5
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 444888.8
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 35.0
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 35.0
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 161.
D [m]: 35.0
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 161.
sum_modified = max(sum,0) [kPa]: 161.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 1.89
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 8.65
su0 * Nc0 [kPa]: 0.139E+04
p0 [kPa]: 318.
su0*Nc0 + p0 [kPa]: 0.171E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 461578.8
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 461578.8
> Qv_fmode_pt :GSC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 32.0
< B_pt [m]: 18.5
Rs_pt [kN]: 21091.71
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 32.0
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 5665.213
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 35.0
< D_pt [m]: 38.0
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 38.0
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 38.0
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 38.0
T_sq [m]: 3.10
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 3.10
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 9.39
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 501133.1
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 38.0
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 38.0
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 161.
D [m]: 38.0
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 161.
sum_modified = max(sum,0) [kPa]: 161.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 2.05
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 8.81
su0 * Nc0 [kPa]: 0.142E+04
p0 [kPa]: 339.
su0*Nc0 + p0 [kPa]: 0.176E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 473952.0
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 501133.1
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 35.0
< B_pt [m]: 18.5
Rs_pt [kN]: 21091.71
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 35.0
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 5665.213
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 38.0
< D_pt [m]: 38.1
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 38.1
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 38.1
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 38.1
T_sq [m]: 3.00
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 3.00
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 9.09
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 504459.5
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 38.1
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 38.1
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 161.
D [m]: 38.1
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 161.
sum_modified = max(sum,0) [kPa]: 161.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 2.06
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 8.81
su0 * Nc0 [kPa]: 0.142E+04
p0 [kPa]: 340.
su0*Nc0 + p0 [kPa]: 0.176E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 474360.6
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 504459.5
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 38.0
< B_pt [m]: 18.5
Rs_pt [kN]: 703.0570
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 38.0
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 188.8404
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 38.1
< D_pt [m]: 41.1
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 41.1
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 41.1
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 41.1
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]: 18.5
T_sq/b_sq [m]: 0.303E-02
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 0.2660681E+09
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 41.1
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 41.1
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 161.
D [m]: 41.1
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 161.
sum_modified = max(sum,0) [kPa]: 161.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 2.22
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 8.96
su0 * Nc0 [kPa]: 0.144E+04
p0 [kPa]: 361.
su0*Nc0 + p0 [kPa]: 0.180E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 486506.3
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 486506.3
> Qv_fmode_pt :GSC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 38.1
< B_pt [m]: 18.5
Rs_pt [kN]: 21091.71
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 38.1
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 5665.213
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 323329.8 0.000000 0.000000 2 0.000000 0.000000 323329.8 * 1 GSS
0.500 0.600 17.3 0.100 355818.5 0.000000 234.1569 3 234.1569 0.000000 355584.4 2 PTS>GSS
0.600 1.10 17.2 0.500 567696.0 0.000000 1161.912 4 1394.264 0.000000 566301.7 10 PTS>PTS>SQC
1.10 1.60 17.6 0.500 596415.8 3069.720 1459.710 5 2919.578 3069.720 596565.9 11 PTS>PTS>PTC>SQC
1.60 2.60 17.6 1.00 436752.7 36239.63 2919.023 6 5838.601 39309.35 470223.5 7 PTS>PTS>PTC>PTC>GSS
2.60 3.00 17.2 0.400 432235.0 0.000000 883.0896 7 6459.315 39309.35 465085.0 5 PTS>PTS>PTC>PTC>PTS>SQC
3.00 4.00 17.9 1.00 596117.4 9473.957 3008.557 8 9978.298 48783.31 634922.5 13 PTS>PTS>PTC>PTC>PTS>PTC>SQC
4.00 4.80 17.9 0.800 716893.4 10101.63 2406.715 9 12385.01 58884.94 763393.3 16 PTS>PTS>PTC>PTC>PTS>PTC>PTC>SQC
4.80 5.60 17.9 0.800 677867.9 29363.66 2306.234 10 14691.25 88248.60 751425.3 15 PTS>PTS>PTC>PTC>PTS>PTC>PTC>PTC>GSS
5.60 6.00 17.2 0.400 472650.3 0.000000 836.6192 11 14451.96 88248.60 546446.9 9 PTS>PTS>PTC>PTC>PTS>PTC>PTC>PTC>PTS>SQC
6.00 7.90 18.1 1.90 688019.7 71834.21 5642.027 12 21704.97 160082.8 826397.5 17 PTS>PTS>PTC>PTC>PTS>PTC>PTC>PTC>PTS>PTC>GSS
7.90 8.50 18.5 0.600 476544.1 0.000000 1457.033 13 24130.14 160082.8 612496.8 12 PTS>PTS>PTC>PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>GSC
8.50 10.9 18.5 2.40 223962.8 25143.23 7444.233 14 31574.37 185226.0 377614.5 3 PTS>PTS>PTC>PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
10.9 14.0 18.5 3.10 260621.9 13402.81 6689.802 15 38264.17 198628.9 420986.6 4 PTS>PTS>PTC>PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>PTC>GSC
14.0 15.6 18.5 1.60 301166.2 7756.007 3237.265 16 41501.44 206384.9 466049.7 6 PTS>PTS>PTC>PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>PTC>PTC>SQC
15.6 18.0 18.5 2.40 369677.3 11949.58 4855.897 17 46357.33 218334.4 541654.4 8 PTS>PTS>PTC>PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>PTC>PTC>PTC>SQC
18.0 19.7 18.5 1.70 463732.5 10616.45 3439.594 18 49796.93 228950.9 642886.5 14 PTS>PTS>PTC>PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>PTC>PTC>PTC>PTC>SQC
19.7 21.5 18.5 1.80 726649.9 12427.30 3641.923 19 53438.85 241378.2 914589.2 19 PTS>PTS>PTC>PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>PTC>PTC>PTC>PTC>PTC>GSC
21.5 27.0 18.5 5.50 2281482. 76002.18 11131.00 20 64569.84 317380.4 2534293. 24 PTS>PTS>PTC>PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>PTC>PTC>PTC>PTC>PTC>PTC>GSC
27.0 28.2 18.5 1.20 2303489. 52401.77 3399.128 21 67968.97 369782.1 2605302. 25 PTS>PTS>PTC>PTC>PTS>….>PTC>PTC>PTC>PTC>PTC>GSC
28.2 32.0 18.5 3.80 448965.3 165848.3 10761.57 22 78730.54 535630.4 905865.2 18 PTS>PTS>PTC>PTC>PTS>….>PTC>PTC>PTC>PTC>PTC>GSC
32.0 35.0 18.5 3.00 461578.8 21091.71 5665.213 23 84395.75 556722.1 933905.2 20 PTS>PTS>PTC>PTC>PTS>….>PTC>PTC>PTC>PTC>PTC>GSC
35.0 38.0 18.5 3.00 501133.1 21091.71 5665.213 24 90060.97 577813.8 988886.0 21 PTS>PTS>PTC>PTC>PTS>….>PTC>PTC>PTC>PTC>PTC>SQC
38.0 38.1 18.5 0.100 504459.5 703.0570 188.8404 25 90249.81 578516.9 992726.6 23 PTS>PTS>PTC>PTC>PTS>….>PTC>PTC>PTC>PTC>PTC>SQC
38.1 41.1 18.5 3.00 486506.3 21091.71 5665.213 26 95915.02 599608.6 990199.9 22 PTS>PTS>PTC>PTC>PTS>….>PTC>PTC>PTC>PTC>PTC>GSC
> Qv_Dpt [kN]: 323329.8
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]: 0.504
> phi_av/deg [deg]: 28.9
phi_av_fun : END — >
is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 11.5
phi_rad_av [rad]: 0.504
phi_rad_av/deg [deg]: 28.9
N_gamma [-]: 12.5
N_q [-]: 31.6
d_gamma [-]: 1.00
d_q [-]: 1.01
p0 [kPa]: 5.00
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.286E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.370E+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]: 323329.8
Qv_GSS_fun: END — >
phi_lay_deg1 [deg]: 25.9
phi_lay_deg2 [deg]: 25.9
> Q_ub [kN]: 323329.8
> 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]: 0.509
> phi_av/deg [deg]: 29.2
phi_av_fun : END — >
is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 11.5
phi_rad_av [rad]: 0.509
phi_rad_av/deg [deg]: 29.2
N_gamma [-]: 13.3
N_q [-]: 33.0
d_gamma [-]: 1.00
d_q [-]: 1.01
p0 [kPa]: 6.00
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.309E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.469E+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]: 355818.5
Qv_GSS_fun: END — >
phi_lay_deg1 [deg]: 25.9
phi_lay_deg2 [deg]: 32.0
> Q_ub [kN]: 355818.5
> 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]: 234.1569
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 0.600
< D_pt [m]: 1.10
< B_pt [m]: 17.6
Qv_SQC_fun: < — BEGIN
< D [m]: 1.10
< B_eq [m]: 17.6
ZTOP_sq_fun: < — BEGIN
< D [m]: 1.10
ZTOP_sq_fun [m bsf]: 1.10
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 1.10
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]: 17.6
T_sq/b_sq [m]: 1.52
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 1.10
B_eq [m]: 17.6
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.625E-01
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 603853.4
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 1.10
< B_eq [m]: 17.6
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 1.10
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 148.
D [m]: 1.10
z_top_first_CLAY_layer_aboveD [m bsf]: 1.10
sum = su0 – rho_av*D [kPa]: 148.
sum_modified = max(sum,0) [kPa]: 148.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 17.6
lambda = D/B_eq [-]: 0.625E-01
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.33
su0 * Nc0 [kPa]: 937.
p0 [kPa]: 11.0
su0*Nc0 + p0 [kPa]: 948.
pi * B_eq * B_eq /4 [m^2]: 243.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 230516.0
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 32.0
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 603853.4
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 0.600
< B_pt [m]: 17.6
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 0.600
< B_pt [m]: 17.6
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1216.583
dW_pt_fun: END — >
Qv_SQC_fun: < — BEGIN
< D [m]: 1.10
< B_eq [m]: 17.6
ZTOP_sq_fun: < — BEGIN
< D [m]: 1.10
ZTOP_sq_fun [m bsf]: 1.10
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 1.10
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]: 17.6
T_sq/b_sq [m]: 1.52
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 1.10
B_eq [m]: 17.6
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.625E-01
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 603853.4
Qv_SQC_fun: END — >
Qv_SQC_fun: < — BEGIN
< D [m]: 1.10
< B_eq [m]: 17.2
ZTOP_sq_fun: < — BEGIN
< D [m]: 1.10
ZTOP_sq_fun [m bsf]: 1.10
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 1.10
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]: 1.10
B_eq [m]: 17.2
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.640E-01
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 567696.0
Qv_SQC_fun: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 0.600
< B_pt [m]: 17.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 0.600
< B_pt [m]: 17.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1161.912
dW_pt_fun: END — >
D, D_pt [m]: 0.600 1.10
D_pt layer # [-]: 3
Qv_Fmode_PT [-]:PTS>SQC
decreasing dW for punch-through layer#[-]: 2
using B_eq (was B_pt), B_eq , B_pt [m]: 17.2 17.6
(B_eq/B_pt)^2 [-]: 0.955
old dW, new dW [kN]: 0.122E+04 0.116E+04
old Qv_SQC, new Qv_SQC (ie Q_ub) [kN]: 0.604E+06 0.568E+06
Q_ub_sub: < — BEGIN
< D [m]: 1.10
< D_pt [m]: 1.60
< B_pt [m]: 17.6
Qv_SQC_fun: < — BEGIN
< D [m]: 1.60
< B_eq [m]: 17.6
ZTOP_sq_fun: < — BEGIN
< D [m]: 1.60
ZTOP_sq_fun [m bsf]: 1.10
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 1.60
T_sq [m]: 1.00
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 1.00
b_sq [-]: 0.330
B_eq [m]: 17.6
T_sq/b_sq [m]: 3.03
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 1.10
B_eq [m]: 17.6
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.625E-01
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 596415.8
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 1.60
< B_eq [m]: 17.6
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 1.60
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 223.
D [m]: 1.60
z_top_first_CLAY_layer_aboveD [m bsf]: 1.10
sum = su0 – rho_av*D [kPa]: 223.
sum_modified = max(sum,0) [kPa]: 223.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 17.6
lambda = D/B_eq [-]: 0.909E-01
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.38
su0 * Nc0 [kPa]: 0.142E+04
p0 [kPa]: 17.0
su0*Nc0 + p0 [kPa]: 0.144E+04
pi * B_eq * B_eq /4 [m^2]: 243.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 350147.6
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 596415.8
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 1.10
< B_pt [m]: 17.6
Rs_pt [kN]: 3069.720
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 1.10
< B_pt [m]: 17.6
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1459.710
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 1.60
< D_pt [m]: 2.60
< B_pt [m]: 17.6
Qv_GSS_fun: < — BEGIN
< D [m]: 2.60
< B_eq [m]: 17.6
phi_av_fun: < — BEGIN
< z1 [m]: 2.60
phi_av [rad]: 0.482
> phi_av/deg [deg]: 27.6
phi_av_fun : END — >
is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 11.3
phi_rad_av [rad]: 0.482
phi_rad_av/deg [deg]: 27.6
N_gamma [-]: 9.96
N_q [-]: 26.6
d_gamma [-]: 1.00
d_q [-]: 1.04
p0 [kPa]: 29.0
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.241E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.196E+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]: 436752.7
Qv_GSS_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 25.4
> Q_ub [kN]: 436752.7
> Qv_fmode_pt :GSS
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 1.60
< B_pt [m]: 17.6
Rs_pt [kN]: 36239.63
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 1.60
< B_pt [m]: 17.6
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2919.023
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 2.60
< D_pt [m]: 3.00
< B_pt [m]: 17.9
Qv_SQC_fun: < — BEGIN
< D [m]: 3.00
< B_eq [m]: 17.9
ZTOP_sq_fun: < — BEGIN
< D [m]: 3.00
ZTOP_sq_fun [m bsf]: 3.00
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 3.00
T_sq [m]: 2.60
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 2.60
b_sq [-]: 0.330
B_eq [m]: 17.9
T_sq/b_sq [m]: 7.88
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 3.00
B_eq [m]: 17.9
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.168
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 471151.2
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 3.00
< B_eq [m]: 17.9
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 3.00
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 225.
D [m]: 3.00
z_top_first_CLAY_layer_aboveD [m bsf]: 3.00
sum = su0 – rho_av*D [kPa]: 225.
sum_modified = max(sum,0) [kPa]: 225.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 17.9
lambda = D/B_eq [-]: 0.168
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.51
su0 * Nc0 [kPa]: 0.146E+04
p0 [kPa]: 32.8
su0*Nc0 + p0 [kPa]: 0.150E+04
pi * B_eq * B_eq /4 [m^2]: 251.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 375438.2
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 25.4
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 471151.2
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 2.60
< B_pt [m]: 17.9
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 2.60
< B_pt [m]: 17.9
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 952.8728
dW_pt_fun: END — >
Qv_SQC_fun: < — BEGIN
< D [m]: 3.00
< B_eq [m]: 17.9
ZTOP_sq_fun: < — BEGIN
< D [m]: 3.00
ZTOP_sq_fun [m bsf]: 3.00
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 3.00
T_sq [m]: 2.60
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 2.60
b_sq [-]: 0.330
B_eq [m]: 17.9
T_sq/b_sq [m]: 7.88
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 3.00
B_eq [m]: 17.9
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.168
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 471151.2
Qv_SQC_fun: END — >
Qv_SQC_fun: < — BEGIN
< D [m]: 3.00
< B_eq [m]: 17.2
ZTOP_sq_fun: < — BEGIN
< D [m]: 3.00
ZTOP_sq_fun [m bsf]: 3.00
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 3.00
T_sq [m]: 2.60
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 2.60
b_sq [-]: 0.330
B_eq [m]: 17.2
T_sq/b_sq [m]: 7.88
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 3.00
B_eq [m]: 17.2
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.174
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 432235.0
Qv_SQC_fun: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 2.60
< B_pt [m]: 17.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 2.60
< B_pt [m]: 17.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 883.0896
dW_pt_fun: END — >
D, D_pt [m]: 2.60 3.00
D_pt layer # [-]: 6
Qv_Fmode_PT [-]:PTS>SQC
decreasing dW for punch-through layer#[-]: 5
using B_eq (was B_pt), B_eq , B_pt [m]: 17.2 17.9
(B_eq/B_pt)^2 [-]: 0.927
old dW, new dW [kN]: 953. 883.
old Qv_SQC, new Qv_SQC (ie Q_ub) [kN]: 0.471E+06 0.432E+06
Q_ub_sub: < — BEGIN
< D [m]: 3.00
< D_pt [m]: 4.00
< B_pt [m]: 17.9
Qv_SQC_fun: < — BEGIN
< D [m]: 4.00
< B_eq [m]: 17.9
ZTOP_sq_fun: < — BEGIN
< D [m]: 4.00
ZTOP_sq_fun [m bsf]: 3.00
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 4.00
T_sq [m]: 1.60
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 1.60
b_sq [-]: 0.330
B_eq [m]: 17.9
T_sq/b_sq [m]: 4.85
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 3.00
B_eq [m]: 17.9
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.168
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 596117.4
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 4.00
< B_eq [m]: 17.9
< 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]: 300.
D [m]: 4.00
z_top_first_CLAY_layer_aboveD [m bsf]: 3.00
sum = su0 – rho_av*D [kPa]: 300.
sum_modified = max(sum,0) [kPa]: 300.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 17.9
lambda = D/B_eq [-]: 0.224
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.60
su0 * Nc0 [kPa]: 0.198E+04
p0 [kPa]: 44.8
su0*Nc0 + p0 [kPa]: 0.203E+04
pi * B_eq * B_eq /4 [m^2]: 251.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 507828.7
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 596117.4
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 3.00
< B_pt [m]: 17.9
Rs_pt [kN]: 9473.957
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 3.00
< B_pt [m]: 17.9
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 3008.557
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 4.00
< D_pt [m]: 4.80
< B_pt [m]: 17.9
Qv_SQC_fun: < — BEGIN
< D [m]: 4.80
< B_eq [m]: 17.9
ZTOP_sq_fun: < — BEGIN
< D [m]: 4.80
ZTOP_sq_fun [m bsf]: 3.00
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 4.80
T_sq [m]: 0.800
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 0.800
b_sq [-]: 0.330
B_eq [m]: 17.9
T_sq/b_sq [m]: 2.42
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 3.00
B_eq [m]: 17.9
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.168
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 716893.4
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 4.80
< B_eq [m]: 17.9
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 4.80
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 221.
D [m]: 4.80
z_top_first_CLAY_layer_aboveD [m bsf]: 3.00
sum = su0 – rho_av*D [kPa]: 221.
sum_modified = max(sum,0) [kPa]: 221.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 17.9
lambda = D/B_eq [-]: 0.269
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.67
su0 * Nc0 [kPa]: 0.148E+04
p0 [kPa]: 54.4
su0*Nc0 + p0 [kPa]: 0.153E+04
pi * B_eq * B_eq /4 [m^2]: 251.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 383479.6
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 716893.4
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 4.00
< B_pt [m]: 17.9
Rs_pt [kN]: 10101.63
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 4.00
< B_pt [m]: 17.9
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2406.715
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 4.80
< D_pt [m]: 5.60
< B_pt [m]: 17.9
Qv_GSS_fun: < — BEGIN
< D [m]: 5.60
< B_eq [m]: 17.9
phi_av_fun: < — BEGIN
< z1 [m]: 5.60
phi_av [rad]: 0.478
> phi_av/deg [deg]: 27.4
phi_av_fun : END — >
is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 10.9
phi_rad_av [rad]: 0.478
phi_rad_av/deg [deg]: 27.4
N_gamma [-]: 9.48
N_q [-]: 25.6
d_gamma [-]: 1.00
d_q [-]: 1.09
p0 [kPa]: 63.6
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.232E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.446E+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]: 677867.9
Qv_GSS_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 29.8
> Q_ub [kN]: 677867.9
> Qv_fmode_pt :GSS
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 4.80
< B_pt [m]: 17.9
Rs_pt [kN]: 29363.66
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 4.80
< B_pt [m]: 17.9
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 2306.234
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 5.60
< D_pt [m]: 6.00
< B_pt [m]: 18.1
Qv_SQC_fun: < — BEGIN
< D [m]: 6.00
< B_eq [m]: 18.1
ZTOP_sq_fun: < — BEGIN
< D [m]: 6.00
ZTOP_sq_fun [m bsf]: 6.00
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 6.00
T_sq [m]: 1.90
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 1.90
b_sq [-]: 0.330
B_eq [m]: 18.1
T_sq/b_sq [m]: 5.76
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 6.00
B_eq [m]: 18.1
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.331
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 533831.6
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 6.00
< B_eq [m]: 18.1
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 6.00
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 234.
D [m]: 6.00
z_top_first_CLAY_layer_aboveD [m bsf]: 6.00
sum = su0 – rho_av*D [kPa]: 234.
sum_modified = max(sum,0) [kPa]: 234.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.1
lambda = D/B_eq [-]: 0.331
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.77
su0 * Nc0 [kPa]: 0.158E+04
p0 [kPa]: 67.2
su0*Nc0 + p0 [kPa]: 0.165E+04
pi * B_eq * B_eq /4 [m^2]: 258.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 426665.2
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 29.8
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 533831.6
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 5.60
< B_pt [m]: 18.1
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 5.60
< B_pt [m]: 18.1
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 929.8785
dW_pt_fun: END — >
Qv_SQC_fun: < — BEGIN
< D [m]: 6.00
< B_eq [m]: 18.1
ZTOP_sq_fun: < — BEGIN
< D [m]: 6.00
ZTOP_sq_fun [m bsf]: 6.00
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 6.00
T_sq [m]: 1.90
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 1.90
b_sq [-]: 0.330
B_eq [m]: 18.1
T_sq/b_sq [m]: 5.76
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 6.00
B_eq [m]: 18.1
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.331
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 533831.6
Qv_SQC_fun: END — >
Qv_SQC_fun: < — BEGIN
< D [m]: 6.00
< B_eq [m]: 17.2
ZTOP_sq_fun: < — BEGIN
< D [m]: 6.00
ZTOP_sq_fun [m bsf]: 6.00
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 6.00
T_sq [m]: 1.90
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 1.90
b_sq [-]: 0.330
B_eq [m]: 17.2
T_sq/b_sq [m]: 5.76
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 6.00
B_eq [m]: 17.2
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.349
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 472650.3
Qv_SQC_fun: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 5.60
< B_pt [m]: 17.2
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 5.60
< B_pt [m]: 17.2
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 836.6192
dW_pt_fun: END — >
D, D_pt [m]: 5.60 6.00
D_pt layer # [-]: 10
Qv_Fmode_PT [-]:PTS>SQC
decreasing dW for punch-through layer#[-]: 9
using B_eq (was B_pt), B_eq , B_pt [m]: 17.2 18.1
(B_eq/B_pt)^2 [-]: 0.900
old dW, new dW [kN]: 930. 837.
old Qv_SQC, new Qv_SQC (ie Q_ub) [kN]: 0.534E+06 0.473E+06
Q_ub_sub: < — BEGIN
< D [m]: 6.00
< D_pt [m]: 7.90
< B_pt [m]: 18.1
Qv_GSS_fun: < — BEGIN
< D [m]: 7.90
< B_eq [m]: 18.1
phi_av_fun: < — BEGIN
< z1 [m]: 7.90
phi_av [rad]: 0.449
> phi_av/deg [deg]: 25.7
phi_av_fun : END — >
is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 9.98
phi_rad_av [rad]: 0.449
phi_rad_av/deg [deg]: 25.7
N_gamma [-]: 6.94
N_q [-]: 20.3
d_gamma [-]: 1.00
d_q [-]: 1.13
p0 [kPa]: 89.0
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.162E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.526E+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]: 688019.7
Qv_GSS_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 25.7
> Q_ub [kN]: 688019.7
> Qv_fmode_pt :GSS
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 6.00
< B_pt [m]: 18.1
Rs_pt [kN]: 71834.21
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 6.00
< B_pt [m]: 18.1
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 5642.027
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 7.90
< D_pt [m]: 8.50
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 8.50
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 8.50
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 8.50
T_sq [m]: 9.50
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 9.50
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 28.8
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 8.50
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 8.50
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 240.
D [m]: 8.50
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 240.
sum_modified = max(sum,0) [kPa]: 240.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 0.459
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 6.97
su0 * Nc0 [kPa]: 0.167E+04
p0 [kPa]: 94.4
su0*Nc0 + p0 [kPa]: 0.177E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 476544.1
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 25.7
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 476544.1
> Qv_fmode_pt :GSC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 7.90
< B_pt [m]: 18.5
Rs_pt [kN]: 0.000000
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 7.90
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 1457.033
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 8.50
< D_pt [m]: 10.9
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 10.9
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 10.9
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 10.9
T_sq [m]: 10.6
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 10.6
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 32.1
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 10.9
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 10.9
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 99.0
D [m]: 10.9
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 99.0
sum_modified = max(sum,0) [kPa]: 99.0
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 0.588
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.15
su0 * Nc0 [kPa]: 708.
p0 [kPa]: 122.
su0*Nc0 + p0 [kPa]: 830.
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 223962.8
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 223962.8
> Qv_fmode_pt :GSC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 8.50
< B_pt [m]: 18.5
Rs_pt [kN]: 25143.23
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 8.50
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 7444.233
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 10.9
< D_pt [m]: 14.0
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 14.0
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 14.0
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 14.0
T_sq [m]: 7.50
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 7.50
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 22.7
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 14.0
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 14.0
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 111.
D [m]: 14.0
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 111.
sum_modified = max(sum,0) [kPa]: 111.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 0.755
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.38
su0 * Nc0 [kPa]: 819.
p0 [kPa]: 147.
su0*Nc0 + p0 [kPa]: 966.
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 260621.9
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 260621.9
> Qv_fmode_pt :GSC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 10.9
< B_pt [m]: 18.5
Rs_pt [kN]: 13402.81
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 10.9
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 6689.802
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 14.0
< D_pt [m]: 15.6
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 15.6
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 15.6
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 15.6
T_sq [m]: 5.90
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 5.90
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 17.9
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 301166.2
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 15.6
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 15.6
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 114.
D [m]: 15.6
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 114.
sum_modified = max(sum,0) [kPa]: 114.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 0.842
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.49
su0 * Nc0 [kPa]: 854.
p0 [kPa]: 159.
su0*Nc0 + p0 [kPa]: 0.101E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 273286.4
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 301166.2
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 14.0
< B_pt [m]: 18.5
Rs_pt [kN]: 7756.007
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 14.0
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 3237.265
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 15.6
< D_pt [m]: 18.0
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 18.0
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 18.0
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 18.0
T_sq [m]: 3.50
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 3.50
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 10.6
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 369677.3
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 18.0
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 18.0
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 143.
D [m]: 18.0
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 143.
sum_modified = max(sum,0) [kPa]: 143.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 0.971
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]: 0.109E+04
p0 [kPa]: 177.
su0*Nc0 + p0 [kPa]: 0.127E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 343034.7
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 369677.3
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 15.6
< B_pt [m]: 18.5
Rs_pt [kN]: 11949.58
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 15.6
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 4855.897
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 18.0
< D_pt [m]: 19.7
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 19.7
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 19.7
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 19.7
T_sq [m]: 1.80
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 1.80
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 5.45
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 463732.5
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 19.7
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 19.7
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 158.
D [m]: 19.7
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 158.
sum_modified = max(sum,0) [kPa]: 158.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 1.06
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.77
su0 * Nc0 [kPa]: 0.123E+04
p0 [kPa]: 190.
su0*Nc0 + p0 [kPa]: 0.142E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 382195.5
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 463732.5
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 18.0
< B_pt [m]: 18.5
Rs_pt [kN]: 10616.45
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 18.0
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 3439.594
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 19.7
< D_pt [m]: 21.5
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 21.5
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 21.5
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 21.5
T_sq [m]: 5.50
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 5.50
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 16.7
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 695400.3
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 21.5
< B_eq [m]: 18.5
< 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]: 316.
D [m]: 21.5
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 316.
sum_modified = max(sum,0) [kPa]: 316.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 1.16
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 7.88
su0 * Nc0 [kPa]: 0.249E+04
p0 [kPa]: 203.
su0*Nc0 + p0 [kPa]: 0.269E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 726649.9
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 726649.9
> Qv_fmode_pt :GSC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 19.7
< B_pt [m]: 18.5
Rs_pt [kN]: 12427.30
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 19.7
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 3641.923
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 21.5
< D_pt [m]: 27.0
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 27.0
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 27.0
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 27.0
T_sq [m]: 11.0
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 11.0
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 33.3
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 27.0
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 27.0
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 0.100E+04
D [m]: 27.0
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 0.100E+04
sum_modified = max(sum,0) [kPa]: 0.100E+04
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 1.46
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]: 0.821E+04
p0 [kPa]: 244.
su0*Nc0 + p0 [kPa]: 0.846E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 2281482.
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 2281482.
> Qv_fmode_pt :GSC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 21.5
< B_pt [m]: 18.5
Rs_pt [kN]: 76002.18
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 21.5
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 11131.00
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 27.0
< D_pt [m]: 28.2
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 28.2
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 28.2
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 28.2
T_sq [m]: 9.80
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 9.80
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 29.7
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 28.2
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 28.2
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 0.100E+04
D [m]: 28.2
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 0.100E+04
sum_modified = max(sum,0) [kPa]: 0.100E+04
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 1.52
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 8.28
su0 * Nc0 [kPa]: 0.828E+04
p0 [kPa]: 257.
su0*Nc0 + p0 [kPa]: 0.854E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 2303489.
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 2303489.
> Qv_fmode_pt :GSC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 27.0
< B_pt [m]: 18.5
Rs_pt [kN]: 52401.77
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 27.0
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 3399.128
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 28.2
< D_pt [m]: 32.0
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 32.0
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 32.0
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 32.0
T_sq [m]: 9.10
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 9.10
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 27.6
* B_eq > T_sq/b_sq [t/f]: F
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 1000000.
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 32.0
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 32.0
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 161.
D [m]: 32.0
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 161.
sum_modified = max(sum,0) [kPa]: 161.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 1.73
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 8.49
su0 * Nc0 [kPa]: 0.137E+04
p0 [kPa]: 297.
su0*Nc0 + p0 [kPa]: 0.166E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 448965.3
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 448965.3
> Qv_fmode_pt :GSC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 28.2
< B_pt [m]: 18.5
Rs_pt [kN]: 165848.3
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 28.2
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 10761.57
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 32.0
< D_pt [m]: 35.0
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 35.0
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 35.0
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 35.0
T_sq [m]: 6.10
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 6.10
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 18.5
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 444888.8
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 35.0
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 35.0
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 161.
D [m]: 35.0
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 161.
sum_modified = max(sum,0) [kPa]: 161.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 1.89
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 8.65
su0 * Nc0 [kPa]: 0.139E+04
p0 [kPa]: 318.
su0*Nc0 + p0 [kPa]: 0.171E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 461578.8
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 461578.8
> Qv_fmode_pt :GSC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 32.0
< B_pt [m]: 18.5
Rs_pt [kN]: 21091.71
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 32.0
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 5665.213
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 35.0
< D_pt [m]: 38.0
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 38.0
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 38.0
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 38.0
T_sq [m]: 3.10
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 3.10
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 9.39
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 501133.1
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 38.0
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 38.0
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 161.
D [m]: 38.0
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 161.
sum_modified = max(sum,0) [kPa]: 161.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 2.05
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 8.81
su0 * Nc0 [kPa]: 0.142E+04
p0 [kPa]: 339.
su0*Nc0 + p0 [kPa]: 0.176E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 473952.0
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 501133.1
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 35.0
< B_pt [m]: 18.5
Rs_pt [kN]: 21091.71
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 35.0
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 5665.213
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 38.0
< D_pt [m]: 38.1
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 38.1
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 38.1
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 38.1
T_sq [m]: 3.00
T_sq_fun: END — >
is_D_clay [t/f]: T
T_sq [m]: 3.00
b_sq [-]: 0.330
B_eq [m]: 18.5
T_sq/b_sq [m]: 9.09
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 504459.5
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 38.1
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 38.1
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 161.
D [m]: 38.1
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 161.
sum_modified = max(sum,0) [kPa]: 161.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 2.06
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 8.81
su0 * Nc0 [kPa]: 0.142E+04
p0 [kPa]: 340.
su0*Nc0 + p0 [kPa]: 0.176E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 474360.6
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 504459.5
> Qv_fmode_pt :SQC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 38.0
< B_pt [m]: 18.5
Rs_pt [kN]: 703.0570
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 38.0
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 188.8404
dW_pt_fun: END — >
Q_ub_sub: < — BEGIN
< D [m]: 38.1
< D_pt [m]: 41.1
< B_pt [m]: 18.5
Qv_SQC_fun: < — BEGIN
< D [m]: 41.1
< B_eq [m]: 18.5
ZTOP_sq_fun: < — BEGIN
< D [m]: 41.1
ZTOP_sq_fun [m bsf]: 8.50
ZTOP_sq_fun: END — >
T_sq_fun: < — BEGIN
< D [m]: 41.1
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]: 18.5
T_sq/b_sq [m]: 0.303E-02
* B_eq > T_sq/b_sq [t/f]: T
ztop_sq [m bsf]: 8.50
B_eq [m]: 18.5
ztop_sq/B_eq (i.e. ‘D/B’) [-]: 0.459
* ‘D/B’ T_sq/b_sq] & [‘D/B’ Qv_SQC [kN]: 0.2660681E+09
Qv_SQC_fun: END — >
Qv_GSC_fun: < — BEGIN
< D [m bsf]: 41.1
< B_eq [m]: 18.5
< sp_beta [rad]: 3.14
< sp_beta/deg [deg]: 180.
rho_av_fun: < — BEGIN
< D [m]: 41.1
rho_av [kPa/m]: 0.00
rho_av_fun: END — >
is_D_clay [t/f]: T
rho_av [kPa/m]: 0.00
su0 [kPa]: 161.
D [m]: 41.1
z_top_first_CLAY_layer_aboveD [m bsf]: 8.50
sum = su0 – rho_av*D [kPa]: 161.
sum_modified = max(sum,0) [kPa]: 161.
kappa_m = rho_av*B_eq/sum_modified [-]: 0.00
kappa_m_modified = max(kappa_m,5) [-]: 0.00
B_eq [m]: 18.5
lambda = D/B_eq [-]: 2.22
kappa_0=kappa_mod/(lambda*kappa_mod+1)[-]: 0.00
sp_beta/deg [deg]: 180.
sp_alpha [-]: 0.600
Nc0 [-]: 8.96
su0 * Nc0 [kPa]: 0.144E+04
p0 [kPa]: 361.
su0*Nc0 + p0 [kPa]: 0.180E+04
pi * B_eq * B_eq /4 [m^2]: 270.
Qv_GSC = ( su0*Nc0 + p0 ) * pi * B_eq * B_eq / 4
> Qv_GSC [kN]: 486506.3
Qv_GSC_fun: END — >
phi_lay_deg1 [deg]: 0.00
phi_lay_deg2 [deg]: 0.00
> Q_ub [kN]: 486506.3
> Qv_fmode_pt :GSC
Q_ub_sub: END — >
Rs_pt_fun: < — BEGIN
< D [m]: 38.1
< B_pt [m]: 18.5
Rs_pt [kN]: 21091.71
Rs_pt_fun: END — >
dW_pt_fun: < — BEGIN
< D [m]: 38.1
< B_pt [m]: 18.5
dW_pt = A_pt * T_pt * gamma_sub_av [kN]: 5665.213
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]: 323329.8 *
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]: 323329.8
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]: 0.504
> phi_av/deg [deg]: 28.9
phi_av_fun : END — >
is_D_clay [t/f]: F
gamma_sub_av [kN/m^3]: 11.5
phi_rad_av [rad]: 0.504
phi_rad_av/deg [deg]: 28.9
N_gamma [-]: 12.5
N_q [-]: 31.6
d_gamma [-]: 1.00
d_q [-]: 1.01
p0 [kPa]: 5.00
gamma_sub_av*D_gamma*N_gamma*pi*B_eq*B_eq*B_eq/8
[kN]: 0.286E+06
p0*d_q*N_q*pi*B_eq*B_eq/4 [kN]: 0.370E+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]: 323329.8
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]: 11.1
V_D [kN]: 215.
> B_S = gamma_sub_av*V_D [kN]: 2388.046
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]: 10.0
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]: 323329.8
B_S, soil buoyancy of spudcan BELOW MAXIMUM BEARING AREA [kN]: 2388.046
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]: 325717.9
ioutd_z_tip_verify: END — >
soil_mat_adjust: < — BEGIN
< z_tip [m]: 3.00
< i_sqc [-]: 1
PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
3.70 1.20 17.2 367006.8 369496.8 PTC>PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
3.80 1.30 17.2 366716.8 369206.7 PTC>PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
3.90 1.40 17.2 366426.7 368918.7 PTC>PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
4.00 1.50 17.2 366136.6 368628.6 PTC>PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
4.10 1.60 17.2 365846.5 368338.5 PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
4.20 1.70 17.2 362614.8 365106.8 PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
4.30 1.80 17.2 359383.0 361872.9 PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
4.40 1.90 17.2 356151.3 358641.2 PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
4.50 2.00 17.2 352919.5 355409.5 PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
4.60 2.10 17.2 349687.8 352177.7 PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
4.70 2.20 17.2 346456.1 348948.1 PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
4.80 2.30 17.2 343224.3 345714.2 PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
4.90 2.40 17.2 339992.6 342478.2 PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
5.00 2.50 17.2 336760.8 339242.3 PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
5.10 2.60 17.2 333529.1 336006.5 PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
5.20 2.70 17.2 331913.4 334407.6 PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
5.30 2.80 17.2 330298.7 332810.8 PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
5.40 2.90 17.2 328684.9 331213.8 PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
5.50 3.00 17.2 327072.1 329617.9 PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
5.60 3.10 17.2 326460.9 329002.1 PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
5.70 3.20 17.2 325849.7 328365.6 PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
5.80 3.30 17.2 325238.5 327729.3 PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
5.90 3.40 17.2 324627.3 327091.2 PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
6.00 3.50 17.2 324016.1 326455.2 PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
6.10 3.60 17.2 323404.9 325839.0 PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
6.20 3.70 17.2 322793.7 325223.6 PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
6.30 3.80 17.2 322182.5 324608.0 PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
6.40 3.90 17.2 321571.4 323992.6 PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
6.50 4.00 17.2 320960.2 323377.1 PTC>PTC>PTS>PTC>PTS>PTC>GSC
6.60 4.10 17.2 320045.4 322458.1 PTC>PTC>PTS>PTC>PTS>PTC>GSC
6.70 4.20 17.2 319130.7 321538.9 PTC>PTC>PTS>PTC>PTS>PTC>GSC
6.80 4.30 17.2 318215.9 320620.0 PTC>PTC>PTS>PTC>PTS>PTC>GSC
6.90 4.40 17.2 317301.2 319700.9 PTC>PTC>PTS>PTC>PTS>PTC>GSC
7.00 4.50 17.2 316386.4 318781.9 PTC>PTC>PTS>PTC>PTS>PTC>GSC
7.10 4.60 17.2 315471.7 317862.7 PTC>PTC>PTS>PTC>PTS>PTC>GSC
7.20 4.70 17.2 314556.9 316943.8 PTC>PTC>PTS>PTC>PTS>PTC>GSC
7.30 4.80 17.2 313642.2 316024.8 PTC>PTS>PTC>PTS>PTC>GSC
7.40 4.90 17.2 310397.0 312779.6 PTC>PTS>PTC>PTS>PTC>GSC
7.50 5.00 17.2 307151.7 309534.3 PTC>PTS>PTC>PTS>PTC>GSC
7.60 5.10 17.2 303906.5 306289.1 PTC>PTS>PTC>PTS>PTC>GSC
7.70 5.20 17.2 300661.3 303046.0 PTC>PTS>PTC>PTS>PTC>GSC
7.80 5.30 17.2 297416.1 299800.8 PTC>PTS>PTC>PTS>PTC>GSC
7.90 5.40 17.2 294170.9 296553.1 PTC>PTS>PTC>PTS>PTC>GSC
8.00 5.50 17.2 290925.6 293286.9 PTC>PTS>PTC>PTS>PTC>GSC
8.10 5.60 17.2 287680.4 290014.8 PTS>PTC>PTS>PTC>GSC
8.20 5.70 17.2 286181.2 288520.5 PTS>PTC>PTS>PTC>GSC
8.30 5.80 17.2 284683.4 287017.8 PTS>PTC>PTS>PTC>GSC
8.40 5.90 17.2 283187.1 285521.4 PTS>PTC>PTS>PTC>GSC
8.50 6.00 17.2 281692.1 284032.8 PTC>PTS>PTC>GSC
8.60 6.10 17.2 278385.7 280720.1 PTC>PTS>PTC>GSC
8.70 6.20 17.2 275079.3 277413.7 PTC>PTS>PTC>GSC
8.80 6.30 17.2 271772.9 274107.3 PTC>PTS>PTC>GSC
8.90 6.40 17.2 268466.5 270800.9 PTC>PTS>PTC>GSC
9.00 6.50 17.2 265160.1 267494.5 PTC>PTS>PTC>GSC
9.10 6.60 17.2 261853.7 264188.0 PTC>PTS>PTC>GSC
9.20 6.70 17.2 258547.3 260881.6 PTC>PTS>PTC>GSC
9.30 6.80 17.2 255240.8 257580.8 PTC>PTS>PTC>GSC
9.40 6.90 17.2 251934.4 254268.8 PTC>PTS>PTC>GSC
9.50 7.00 17.2 248628.0 250962.4 PTC>PTS>PTC>GSC
9.60 7.10 17.2 245321.6 247661.6 PTC>PTS>PTC>GSC
9.70 7.20 17.2 242015.2 244349.6 PTC>PTS>PTC>GSC
9.80 7.30 17.2 238708.8 241043.2 PTC>PTS>PTC>GSC
9.90 7.40 17.2 235402.4 237736.7 PTC>PTS>PTC>GSC
10.0 7.50 17.2 232096.0 234430.3 PTC>PTS>PTC>GSC
10.1 7.60 17.2 228789.5 231123.9 PTC>PTS>PTC>GSC
10.2 7.70 17.2 225483.1 227817.5 PTC>PTS>PTC>GSC
10.3 7.80 17.2 222176.7 224511.1 PTC>PTS>PTC>GSC
10.4 7.90 17.2 218870.3 221210.6 PTS>PTC>GSC
10.5 8.00 17.2 217600.8 219962.0 PTS>PTC>GSC
10.6 8.10 17.2 216332.8 218715.8 PTS>PTC>GSC
10.7 8.20 17.2 215066.6 217470.5 PTS>PTC>GSC
10.8 8.30 17.2 213802.0 216228.3 PTS>PTC>GSC
10.9 8.40 17.2 212539.1 214985.8 PTS>PTC>GSC
11.0 8.50 17.2 211277.9 213716.6 PTC>GSC
11.1 8.60 17.2 210572.8 212982.2 PTC>GSC
11.2 8.70 17.2 209867.7 212245.7 PTC>GSC
11.3 8.80 17.2 209162.6 211511.3 PTC>GSC
11.4 8.90 17.2 208457.5 210775.8 PTC>GSC
11.5 9.00 17.2 207752.4 210041.4 PTC>GSC
11.6 9.10 17.2 207047.2 209305.0 PTC>GSC
11.7 9.20 17.2 206342.1 208570.5 PTC>GSC
11.8 9.30 17.2 205637.0 207835.1 PTC>GSC
11.9 9.40 17.2 204931.9 207100.6 PTC>GSC
12.0 9.50 17.2 204226.8 206364.2 PTC>GSC
12.1 9.60 17.2 203521.7 205629.7 PTC>GSC
12.2 9.70 17.2 202816.6 204894.3 PTC>GSC
12.3 9.80 17.2 202111.5 204159.8 PTC>GSC
12.4 9.90 17.2 201406.3 203423.4 PTC>GSC
12.5 10.0 17.2 200701.2 202689.0 PTC>GSC
12.6 10.1 17.2 199996.1 201953.5 PTC>GSC
12.7 10.2 17.2 199291.0 201219.1 PTC>GSC
12.8 10.3 17.2 198585.9 200482.6 PTC>GSC
12.9 10.4 17.2 197880.8 199748.2 PTC>GSC
13.0 10.5 17.2 197175.7 199012.7 PTC>GSC
13.1 10.6 17.2 196470.5 198278.3 PTC>GSC
13.2 10.7 17.2 195765.4 197541.9 PTC>GSC
13.3 10.8 17.2 195060.3 196807.4 PTC>GSC
13.4 10.9 17.2 188110.5 189827.8 GSC
13.5 11.0 17.2 188468.7 190186.0 GSC
13.6 11.1 17.2 188826.6 190543.8 GSC
13.7 11.2 17.2 189184.0 190901.3 GSC
13.8 11.3 17.2 189541.1 191258.4 GSC
13.9 11.4 17.2 189897.9 191615.1 GSC
14.0 11.5 17.2 190254.2 191971.3 GSC
14.1 11.6 17.2 190610.3 192323.2 GSC
14.2 11.7 17.2 190965.9 192674.6 GSC
14.3 11.8 17.2 191321.2 193025.6 GSC
14.4 11.9 17.2 191676.2 193376.5 GSC
14.5 12.0 17.2 192030.8 193726.4 GSC
14.6 12.1 17.2 192385.1 194076.7 GSC
14.7 12.2 17.2 192739.0 194426.2 GSC
14.8 12.3 17.2 193092.6 194775.5 GSC
14.9 12.4 17.2 193445.8 195124.3 GSC
15.0 12.5 17.2 193798.7 195473.1 GSC
15.1 12.6 17.2 194151.2 195821.4 GSC
15.2 12.7 17.2 194503.4 196169.2 GSC
15.3 12.8 17.2 194855.3 196516.7 GSC
15.4 12.9 17.2 195206.8 196863.9 GSC
15.5 13.0 17.2 195558.0 197210.8 GSC
15.6 13.1 17.2 195908.9 197557.5 GSC
15.7 13.2 17.2 196259.5 197903.7 GSC
15.8 13.3 17.2 196609.7 198249.6 GSC
15.9 13.4 17.2 196959.6 198595.1 GSC
16.0 13.5 17.2 197309.1 198940.7 GSC
16.1 13.6 17.2 197658.4 199285.2 GSC
16.2 13.7 17.2 198007.3 199630.2 GSC
16.3 13.8 17.2 198355.9 199974.4 GSC
16.4 13.9 17.2 198704.2 200318.4 GSC
16.5 14.0 17.2 219043.8 220653.7 GSC
16.6 14.1 17.2 219399.5 221009.4 GSC
16.7 14.2 17.2 219754.8 221364.7 GSC
16.8 14.3 17.2 220109.7 221719.6 GSC
16.9 14.4 17.2 220464.3 222074.2 GSC
17.0 14.5 17.2 220818.5 222428.5 GSC
17.1 14.6 17.2 221172.5 222782.4 GSC
17.2 14.7 17.2 221526.0 223135.9 GSC
17.3 14.8 17.2 221879.2 223489.1 GSC
17.4 14.9 17.2 222232.1 223842.0 GSC
17.5 15.0 17.2 222584.6 224194.6 GSC
17.6 15.1 17.2 222936.8 224546.8 GSC
17.7 15.2 17.2 223288.7 224898.6 GSC
17.8 15.3 17.2 223640.2 225250.2 GSC
17.9 15.4 17.2 223991.5 225601.4 GSC
18.0 15.5 17.2 224342.3 225952.2 GSC
18.1 15.6 17.2 229768.1 231378.0 GSC
18.2 15.7 17.2 230123.1 231733.0 GSC
18.3 15.8 17.2 230477.7 232087.6 GSC
18.4 15.9 17.2 264270.3 265880.2 SQC
18.5 16.0 17.2 265917.6 267527.5 SQC
18.6 16.1 17.2 267621.8 269231.7 SQC
18.7 16.2 17.2 269450.2 271060.1 SQC
18.8 16.3 17.2 271278.4 272888.3 SQC
18.9 16.4 17.2 273200.1 274810.1 SQC
19.0 16.5 17.2 275158.4 276768.3 SQC
19.1 16.6 17.2 277217.1 278827.1 SQC
19.2 16.7 17.2 279379.4 280989.3 SQC
19.3 16.8 17.2 281583.7 283193.6 SQC
19.4 16.9 17.2 283832.6 285442.5 SQC
19.5 17.0 17.2 286194.4 287804.3 SQC
19.6 17.1 17.2 288740.9 290350.8 SQC
19.7 17.2 17.2 291243.2 292853.1 SQC
19.8 17.3 17.2 293971.3 295581.2 SQC
19.9 17.4 17.2 296862.9 298472.8 SQC
20.0 17.5 17.2 299827.3 301437.2 SQC
20.1 17.6 17.2 302934.8 304544.7 SQC
20.2 17.7 17.2 306192.3 307802.3 SQC
20.3 17.8 17.2 309678.3 311288.2 SQC
20.4 17.9 17.2 313295.9 314905.9 SQC
20.5 18.0 17.2 317160.2 318770.1 SQC
20.6 18.1 17.2 319682.5 321292.4 SQC
20.7 18.2 17.2 322312.4 323922.3 SQC
20.8 18.3 17.2 325059.8 326669.8 SQC
20.9 18.4 17.2 328046.7 329656.6 SQC
21.0 18.5 17.2 331177.1 332787.0 SQC
21.1 18.6 17.2 334465.8 336075.7 SQC
21.2 18.7 17.2 338043.1 339653.0 SQC
21.3 18.8 17.2 341817.2 343427.1 SQC
21.4 18.9 17.2 345849.2 347459.1 SQC
21.5 19.0 17.2 350205.6 351815.5 SQC
21.6 19.1 17.2 354959.3 356569.2 SQC
21.7 19.2 17.2 360031.1 361641.0 SQC
21.8 19.3 17.2 365585.6 367195.5 SQC
21.9 19.4 17.2 371679.6 373289.5 SQC
22.0 19.5 17.2 378381.0 379990.9 SQC
22.1 19.6 17.2 385856.9 387466.8 SQC
22.2 19.7 17.2 394061.2 395671.1 SQC
22.3 19.8 17.2 401305.8 402915.7 SQC
22.4 19.9 17.2 409402.2 411012.1 SQC
22.5 20.0 17.2 418520.7 420130.6 SQC
22.6 20.1 17.2 428880.4 430490.3 SQC
22.7 20.2 17.2 440767.6 442377.5 SQC
22.8 20.3 17.2 454564.2 456174.1 SQC
22.9 20.4 17.2 470791.1 472401.0 SQC
23.0 20.5 17.2 490177.2 491787.1 SQC
23.1 20.6 17.2 513775.6 515385.5 SQC
23.2 20.7 17.2 543166.0 544775.9 SQC
23.3 20.8 17.2 580830.7 582440.6 SQC
23.4 20.9 17.2 630906.7 632516.6 SQC
23.5 21.0 17.2 635772.1 637382.0 PTC>GSC
23.6 21.1 17.2 635305.6 636915.5 PTC>GSC
23.7 21.2 17.2 634839.1 636449.1 PTC>GSC
23.8 21.3 17.2 634372.7 635982.6 PTC>GSC
23.9 21.4 17.2 633906.2 635516.1 PTC>GSC
24.0 21.5 17.2 609874.2 611484.1 GSC
24.1 21.6 17.2 610501.1 612111.0 GSC
24.2 21.7 17.2 611127.2 612737.1 GSC
24.3 21.8 17.2 611752.6 613362.5 GSC
24.4 21.9 17.2 612377.3 613987.2 GSC
24.5 22.0 17.2 613001.3 614611.2 GSC
24.6 22.1 17.2 614409.1 616019.1 SQC
24.7 22.2 17.2 616870.8 618480.7 SQC
24.8 22.3 17.2 619407.9 621017.8 SQC
24.9 22.4 17.2 622025.5 623635.4 SQC
25.0 22.5 17.2 624728.9 626338.8 SQC
25.1 22.6 17.2 627523.9 629133.8 SQC
25.2 22.7 17.2 629655.3 631265.2 PTC>PTC>PTC>GSC
25.3 22.8 17.2 628547.2 630157.1 PTC>PTC>PTC>GSC
25.4 22.9 17.2 627439.1 629049.0 PTC>PTC>PTC>GSC
25.5 23.0 17.2 626330.9 627940.8 PTC>PTC>PTC>GSC
25.6 23.1 17.2 625222.8 626832.7 PTC>PTC>PTC>GSC
25.7 23.2 17.2 624114.7 625724.6 PTC>PTC>PTC>GSC
25.8 23.3 17.2 623006.5 624616.4 PTC>PTC>PTC>GSC
25.9 23.4 17.2 621898.4 623508.3 PTC>PTC>PTC>GSC
26.0 23.5 17.2 620790.3 622400.2 PTC>PTC>PTC>GSC
26.1 23.6 17.2 619682.1 621292.0 PTC>PTC>PTC>GSC
26.2 23.7 17.2 618574.0 620183.9 PTC>PTC>PTC>GSC
26.3 23.8 17.2 617465.9 619075.8 PTC>PTC>PTC>GSC
26.4 23.9 17.2 616357.7 617967.6 PTC>PTC>PTC>GSC
26.5 24.0 17.2 615249.6 616859.5 PTC>PTC>PTC>GSC
26.6 24.1 17.2 614141.5 615751.4 PTC>PTC>PTC>GSC
26.7 24.2 17.2 613033.3 614643.2 PTC>PTC>PTC>GSC
26.8 24.3 17.2 611925.2 613535.1 PTC>PTC>PTC>GSC
26.9 24.4 17.2 610817.1 612427.0 PTC>PTC>PTC>GSC
27.0 24.5 17.2 609708.9 611319.3 PTC>PTC>PTC>GSC
27.1 24.6 17.2 608600.8 610236.3 PTC>PTC>PTC>GSC
27.2 24.7 17.2 607492.7 609153.3 PTC>PTC>PTC>GSC
27.3 24.8 17.2 606384.5 608072.0 PTC>PTC>PTC>GSC
27.4 24.9 17.2 605276.4 606989.0 PTC>PTC>PTC>GSC
27.5 25.0 17.2 604168.2 605906.9 PTC>PTC>PTC>GSC
27.6 25.1 17.2 603060.1 604823.9 PTC>PTC>PTC>GSC
27.7 25.2 17.2 601952.0 603742.6 PTC>PTC>PTC>GSC
27.8 25.3 17.2 600843.8 602659.6 PTC>PTC>PTC>GSC
27.9 25.4 17.2 599735.7 601577.5 PTC>PTC>PTC>GSC
28.0 25.5 17.2 598627.6 600494.5 PTC>PTC>PTC>GSC
28.1 25.6 17.2 597519.4 599413.2 PTC>PTC>PTC>GSC
28.2 25.7 17.2 596411.3 598330.2 PTC>PTC>PTC>GSC
28.3 25.8 17.2 595303.2 597248.1 PTC>PTC>PTC>GSC
28.4 25.9 17.2 594195.0 596165.1 PTC>PTC>PTC>GSC
28.5 26.0 17.2 593086.9 595083.8 PTC>PTC>PTC>GSC
28.6 26.1 17.2 591978.8 594000.8 PTC>PTC>PTC>GSC
28.7 26.2 17.2 590870.6 592918.7 PTC>PTC>PTC>GSC
28.8 26.3 17.2 589762.5 591835.7 PTC>PTC>PTC>GSC
28.9 26.4 17.2 588654.4 590754.4 PTC>PTC>PTC>GSC
29.0 26.5 17.2 587546.2 589671.4 PTC>PTC>PTC>GSC
29.1 26.6 17.2 586438.1 588589.3 PTC>PTC>PTC>GSC
29.2 26.7 17.2 585330.0 587506.3 PTC>PTC>PTC>GSC
29.3 26.8 17.2 584221.8 586425.0 PTC>PTC>PTC>GSC
29.4 26.9 17.2 583113.7 585342.0 PTC>PTC>PTC>GSC
29.5 27.0 17.2 582005.6 584259.5 PTC>PTC>GSC
29.6 27.1 17.2 578196.9 580450.8 PTC>PTC>GSC
29.7 27.2 17.2 574388.2 576642.1 PTC>PTC>GSC
29.8 27.3 17.2 570579.5 572833.4 PTC>PTC>GSC
29.9 27.4 17.2 566770.8 569024.7 PTC>PTC>GSC
30.0 27.5 17.2 562962.1 565216.0 PTC>PTC>GSC
30.1 27.6 17.2 559153.5 561407.3 PTC>PTC>GSC
30.2 27.7 17.2 555344.8 557598.7 PTC>PTC>GSC
30.3 27.8 17.2 551536.1 553790.0 PTC>PTC>GSC
30.4 27.9 17.2 547727.4 549981.3 PTC>PTC>GSC
30.5 28.0 17.2 543918.7 546172.6 PTC>PTC>GSC
30.6 28.1 17.2 540110.0 542363.9 PTC>PTC>GSC
30.7 28.2 17.2 536301.4 538555.2 PTC>GSC
30.8 28.3 17.2 532494.8 534748.7 PTC>GSC
30.9 28.4 17.2 528688.3 530942.2 PTC>GSC
31.0 28.5 17.2 524881.8 527135.7 PTC>GSC
31.1 28.6 17.2 521075.3 523329.1 PTC>GSC
31.2 28.7 17.2 517268.7 519522.6 PTC>GSC
31.3 28.8 17.2 513462.2 515716.1 PTC>GSC
31.4 28.9 17.2 509655.7 511909.6 PTC>GSC
31.5 29.0 17.2 505849.2 508103.0 PTC>GSC
31.6 29.1 17.2 502042.6 504296.5 PTC>GSC
31.7 29.2 17.2 498236.1 500490.0 PTC>GSC
31.8 29.3 17.2 494429.6 496683.5 PTC>GSC
31.9 29.4 17.2 490623.1 492877.0 PTC>GSC
32.0 29.5 17.2 486816.5 489069.9 PTC>GSC
32.1 29.6 17.2 483010.0 485234.1 PTC>GSC
32.2 29.7 17.2 479203.5 481398.2 PTC>GSC
32.3 29.8 17.2 475397.0 477560.4 PTC>GSC
32.4 29.9 17.2 471590.4 473724.5 PTC>GSC
32.5 30.0 17.2 467783.9 469887.6 PTC>GSC
32.6 30.1 17.2 463977.4 466051.8 PTC>GSC
32.7 30.2 17.2 460170.9 462213.9 PTC>GSC
32.8 30.3 17.2 456364.3 458378.1 PTC>GSC
32.9 30.4 17.2 452557.8 454541.2 PTC>GSC
33.0 30.5 17.2 448751.3 450705.4 PTC>GSC
33.1 30.6 17.2 444944.8 446867.5 PTC>GSC
33.2 30.7 17.2 441138.3 443031.7 PTC>GSC
33.3 30.8 17.2 437331.7 439194.8 PTC>GSC
33.4 30.9 17.2 433525.2 435358.9 PTC>GSC
33.5 31.0 17.2 429718.7 431521.1 PTC>GSC
33.6 31.1 17.2 425912.2 427685.2 PTC>GSC
33.7 31.2 17.2 422105.6 423848.4 PTC>GSC
33.8 31.3 17.2 418299.1 420012.5 PTC>GSC
33.9 31.4 17.2 414492.6 416174.7 PTC>GSC
34.0 31.5 17.2 410686.1 412338.8 PTC>GSC
34.1 31.6 17.2 406879.5 408502.0 PTC>GSC
34.2 31.7 17.2 403073.0 404666.1 PTC>GSC
34.3 31.8 17.2 399266.5 400828.3 PTC>GSC
34.4 31.9 17.2 395460.0 396992.4 PTC>GSC
34.5 32.0 17.2 378101.7 379604.3 GSC
34.6 32.1 17.2 378462.9 379965.5 GSC
34.7 32.2 17.2 378823.9 380326.5 GSC
34.8 32.3 17.2 379184.7 380687.3 GSC
34.9 32.4 17.2 379545.2 381047.8 GSC
35.0 32.5 17.2 379905.4 381408.0 GSC
35.1 32.6 17.2 380265.4 381768.0 GSC
35.2 32.7 17.2 380625.2 382127.8 GSC
35.3 32.8 17.2 380984.7 382487.3 GSC
35.4 32.9 17.2 381343.9 382846.5 GSC
35.5 33.0 17.2 381703.0 383205.5 GSC
35.6 33.1 17.2 382061.7 383564.3 GSC
35.7 33.2 17.2 382420.2 383922.8 GSC
35.8 33.3 17.2 382778.5 384281.1 GSC
35.9 33.4 17.2 383136.5 384639.1 GSC
36.0 33.5 17.2 383494.3 384996.9 GSC
36.1 33.6 17.2 383851.9 385354.5 GSC
36.2 33.7 17.2 384209.2 385711.8 GSC
36.3 33.8 17.2 384566.3 386068.8 GSC
36.4 33.9 17.2 384923.1 386425.7 GSC
36.5 34.0 17.2 385279.7 386782.3 GSC
36.6 34.1 17.2 385636.0 387138.6 GSC
36.7 34.2 17.2 385992.1 387494.7 GSC
36.8 34.3 17.2 386348.0 387850.6 GSC
36.9 34.4 17.2 386703.7 388206.2 GSC
37.0 34.5 17.2 387059.1 388561.7 GSC
37.1 34.6 17.2 387414.2 388916.8 GSC
37.2 34.7 17.2 387769.2 389271.8 GSC
37.3 34.8 17.2 388123.9 389626.5 GSC
37.4 34.9 17.2 388478.4 389980.9 GSC
37.5 35.0 17.2 388832.6 390335.2 GSC
37.6 35.1 17.2 389186.6 390689.2 GSC
37.7 35.2 17.2 389540.4 391043.0 GSC
37.8 35.3 17.2 389893.9 391396.5 GSC
37.9 35.4 17.2 390247.3 391749.9 GSC
38.0 35.5 17.2 392278.1 393780.7 SQC
38.1 35.6 17.2 393391.1 394893.7 SQC
38.2 35.7 17.2 394529.7 396032.3 SQC
38.3 35.8 17.2 395695.2 397197.8 SQC
38.4 35.9 17.2 396889.3 398391.9 SQC
38.5 36.0 17.2 398113.6 399616.1 SQC
38.6 36.1 17.2 399369.9 400872.5 SQC
38.7 36.2 17.2 400660.2 402162.8 SQC
38.8 36.3 17.2 401986.6 403489.2 SQC
38.9 36.4 17.2 403351.4 404854.0 SQC
39.0 36.5 17.2 404757.1 406259.7 SQC
39.1 36.6 17.2 406206.5 407709.1 SQC
39.2 36.7 17.2 407702.6 409205.2 SQC
39.3 36.8 17.2 409248.5 410751.0 SQC
39.4 36.9 17.2 410847.8 412350.4 SQC
39.5 37.0 17.2 412504.5 414007.1 SQC
39.6 37.1 17.2 414222.8 415725.4 SQC
39.7 37.2 17.2 416007.6 417510.2 SQC
39.8 37.3 17.2 417863.9 419366.5 SQC
39.9 37.4 17.2 419797.8 421300.4 SQC
40.0 37.5 17.2 421815.5 423318.1 SQC
40.1 37.6 17.2 423924.3 425426.9 SQC
40.2 37.7 17.2 426132.2 427634.8 SQC
40.3 37.8 17.2 428448.3 429950.9 SQC
40.4 37.9 17.2 430882.7 432385.3 SQC
40.5 38.0 17.2 433446.7 434949.3 SQC
40.6 38.1 17.2 436153.5 437656.1 SQC
40.7 38.2 17.2 438965.6 440468.2 PTC>GSC
40.8 38.3 17.2 438475.8 439978.4 PTC>GSC
40.9 38.4 17.2 437986.0 439488.5 PTC>GSC
41.0 38.5 17.2 437496.1 438998.7 PTC>GSC
41.1 38.6 17.2 437006.3 438508.9 PTC>GSC
41.2 38.7 17.2 436516.5 438019.0 PTC>GSC
41.3 38.8 17.2 436026.6 437529.2 PTC>GSC
41.4 38.9 17.2 435536.8 437039.4 PTC>GSC
41.5 39.0 17.2 435047.0 436549.6 PTC>GSC
41.6 39.1 17.2 434557.1 436059.7 PTC>GSC
41.7 39.2 17.2 434067.3 435569.9 PTC>GSC
41.8 39.3 17.2 433577.5 435080.1 PTC>GSC
41.9 39.4 17.2 433087.6 434590.2 PTC>GSC
42.0 39.5 17.2 432597.8 434100.4 PTC>GSC
42.1 39.6 17.2 432108.0 433610.6 PTC>GSC
42.2 39.7 17.2 431618.2 433120.7 PTC>GSC
42.3 39.8 17.2 431128.3 432630.9 PTC>GSC
42.4 39.9 17.2 430638.5 432141.1 PTC>GSC
42.5 40.0 17.2 430148.7 431651.2 PTC>GSC
42.6 40.1 17.2 429658.8 431161.4 PTC>GSC
42.7 40.2 17.2 429169.0 430671.6 PTC>GSC
42.8 40.3 17.2 428679.2 430181.8 PTC>GSC
42.9 40.4 17.2 428189.3 429691.9 PTC>GSC
43.0 40.5 17.2 427699.5 429202.1 PTC>GSC
43.1 40.6 17.2 427209.7 428712.3 PTC>GSC
43.2 40.7 17.2 426719.8 428222.4 PTC>GSC
43.3 40.8 17.2 426230.0 427732.6 PTC>GSC
43.4 40.9 17.2 425740.2 427242.8 PTC>GSC
43.5 41.0 17.2 425250.3 426752.9 PTC>GSC
43.6 41.1 17.2 410029.6 411532.2 GSC
43.7 41.2 17.2 410370.7 411873.3 GSC
43.8 41.3 17.2 410711.7 412214.3 GSC
43.9 41.4 17.2 411052.4 412555.0 GSC
44.0 41.5 17.2 411393.0 412895.6 GSC
44.1 41.6 17.2 411733.3 413235.9 GSC
——————————————————————-
z_tip D B_eq Qv_Dpt V_L Qv_fmode
[m] [m] [m] [kN] [kN]
——————————————————————-
out_sp_pen_sub: PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
4.10 5.10 1.60 2.60 1.00 PTC>PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
5.10 5.50 2.60 3.00 0.400 PTS>PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
5.50 6.50 3.00 4.00 1.00 PTC>PTC>PTC>PTS>PTC>PTS>PTC>GSC
6.50 7.30 4.00 4.80 0.800 PTC>PTC>PTS>PTC>PTS>PTC>GSC
7.30 8.10 4.80 5.60 0.800 PTC>PTS>PTC>PTS>PTC>GSC
8.10 8.50 5.60 6.00 0.400 PTS>PTC>PTS>PTC>GSC
8.50 10.4 6.00 7.90 1.90 PTC>PTS>PTC>GSC
10.4 11.0 7.90 8.50 0.600 PTS>PTC>GSC
11.0 13.4 8.50 10.9 2.40 PTC>GSC
13.4 18.4 10.9 15.9 5.00 GSC
18.4 23.5 15.9 21.0 5.10 SQC
23.5 24.0 21.0 21.5 0.500 PTC>GSC
24.0 24.6 21.5 22.1 0.600 GSC
24.6 25.2 22.1 22.7 0.600 SQC
25.2 29.5 22.7 27.0 4.30 PTC>PTC>PTC>GSC
29.5 30.7 27.0 28.2 1.20 PTC>PTC>GSC
30.7 34.5 28.2 32.0 3.80 PTC>GSC
34.5 38.0 32.0 35.5 3.50 GSC
38.0 40.7 35.5 38.2 2.70 SQC
40.7 43.6 38.2 41.1 2.90 PTC>GSC
43.6 44.1 41.1 41.6 0.500 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: 31
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=25.20 degrees.
WARNING. gmdata: soil layer # 2; BDEN=10.00 kN/m^3 is inconsistent with PHI=25.90 degrees.
WARNING. gmdata: soil layer # 3; BDEN=10.00 kN/m^3 is inconsistent with PHI=32.00 degrees.
WARNING. gmdata: soil layer # 4; SU_TOP, SIGV=11.00 kPa; PSI=SU/SIGV=13.45 is outside typical range [0.15 – 4].
WARNING. gmdata: soil layer # 4; SU_BOT, SIGV=17.00 kPa; PSI=SU/SIGV=8.70 is outside typical range [0.15 – 4].
WARNING. gmdata: soil layer # 4; BDEN=12.00 kN/m^3 is inconsistent with SU_TOP=148.00 kPa.
WARNING. gmdata: soil layer # 5; SU_TOP, SIGV=17.00 kPa; PSI=SU/SIGV=13.11 is outside typical range [0.15 – 4].
WARNING. gmdata: soil layer # 5; SU_BOT, SIGV=29.00 kPa; PSI=SU/SIGV=7.68 is outside typical range [0.15 – 4].
WARNING. gmdata: soil layer # 6; BDEN=9.50 kN/m^3 is inconsistent with PHI=25.40 degrees.
WARNING. gmdata: soil layer # 7; SU_TOP, SIGV=32.80 kPa; PSI=SU/SIGV=6.85 is outside typical range [0.15 – 4].
WARNING. gmdata: soil layer # 7; SU_BOT, SIGV=44.80 kPa; PSI=SU/SIGV=5.02 is outside typical range [0.15 – 4].
WARNING. gmdata: soil layer # 8; SU_TOP, SIGV=44.80 kPa; PSI=SU/SIGV=6.69 is outside typical range [0.15 – 4].
WARNING. gmdata: soil layer # 8; SU_BOT, SIGV=54.40 kPa; PSI=SU/SIGV=5.51 is outside typical range [0.15 – 4].
WARNING. gmdata: soil layer # 9; SU_TOP, SIGV=54.40 kPa; PSI=SU/SIGV=4.06 is outside typical range [0.15 – 4].
WARNING. gmdata: soil layer # 15; BDEN=7.50 kN/m^3 is inconsistent with SU_TOP=111.00 kPa.
WARNING. gmdata: soil layer # 16; BDEN=7.50 kN/m^3 is inconsistent with SU_TOP=114.00 kPa.
WARNING. gmdata: soil layer # 17; BDEN=7.50 kN/m^3 is inconsistent with SU_TOP=143.00 kPa.
WARNING. gmdata: soil layer # 18; BDEN=7.50 kN/m^3 is inconsistent with SU_TOP=158.00 kPa.
WARNING. gmdata: soil layer # 19; BDEN=7.50 kN/m^3 is inconsistent with SU_TOP=316.00 kPa.
WARNING. gmdata: soil layer # 20; SU_TOP, SIGV=244.35 kPa; PSI=SU/SIGV=4.09 is outside typical range [0.15 – 4].
WARNING. gmdata: soil layer # 22; BDEN=7.00 kN/m^3 is inconsistent with SU_TOP=161.00 kPa.
WARNING. gmdata: soil layer # 23; BDEN=7.00 kN/m^3 is inconsistent with SU_TOP=161.00 kPa.
WARNING. gmdata: soil layer # 24; BDEN=7.00 kN/m^3 is inconsistent with SU_TOP=161.00 kPa.
WARNING. gmdata: soil layer # 25; BDEN=7.00 kN/m^3 is inconsistent with SU_TOP=161.00 kPa.
WARNING. gmdata: soil layer # 26; BDEN=7.00 kN/m^3 is inconsistent with SU_TOP=161.00 kPa.
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].
WARNING. spfdat: base of ground profile ZBOT exceeds 2.5 B;
WARNING. spfdat: ?decrease ZBOT.
z_tip_penetration [m]: 16.6
out_sp_pen_sub: END — >
input file: “JOB.I01”
output file: “JOB.O01”
iso_19905_1: normal program end
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