problem converge

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ehsanala
Posts: 48
Joined: Wed Nov 14, 2012 12:27 am

problem converge

Post by ehsanala » Tue Nov 12, 2013 7:15 am

hi

What is the problem in the following model?

thanks all






wipe

#unit N-m-s


file mkdir ddd
set txt [open ddd/d3.txt w+]
puts $txt


set pi [expr 4*atan(1)]
puts $pi


model basic -ndm 2 -ndf 3

set h 3.9624

set x 9.144

node 1 0. 0.
node 2 0. $h
node 3 0. [expr 2*$h]
node 4 0. [expr 3*$h]

node 5 $x 0.
node 6 $x $h
node 7 $x [expr 2*$h]
node 8 $x [expr 3*$h]

node 9 [expr $x/2] $h
node 10 [expr $x/2] [expr 2*$h]
node 11 [expr $x/2] [expr 3*$h]


#hinge
node 100 0. 0.
node 200 0. $h
node 300 0. [expr 2*$h]
node 400 0. [expr 3*$h]

node 500 $x 0.
node 600 $x $h
node 700 $x [expr 2*$h]
node 800 $x [expr 3*$h]

node 900 [expr $x/2] $h
node 1000 [expr $x/2] [expr 2*$h]
node 1100 [expr $x/2] [expr 3*$h]

node 901 [expr $x/2] $h
node 1001 [expr $x/2] [expr 2*$h]
node 1101 [expr $x/2] [expr 3*$h]

#node SMA
node 12 4.28634 3.714834
node 13 4.85766 3.714834

node 14 4.31815 [expr $h+3.73258]
node 15 4.8259 [expr $h+3.73258]

node 16 4.31809 [expr 2*$h+3.74233]
node 17 4.82592 [expr 2*$h+3.74233]

puts [expr 2*$h+3.74233]
fix 1 1 1 1
fix 5 1 1 1

equalDOF 1 100 1 2
equalDOF 2 200 1 2
equalDOF 3 300 1 2
equalDOF 4 400 1 2

equalDOF 5 500 1 2
equalDOF 6 600 1 2
equalDOF 7 700 1 2
equalDOF 8 800 1 2

equalDOF 9 900 1 2
equalDOF 9 901 1 2

equalDOF 10 1000 1 2
equalDOF 10 1001 1 2

equalDOF 11 1100 1 2
equalDOF 11 1101 1 2

#Diaphragm rigid
equalDOF 2 9 1 2
equalDOF 2 6 1 2


equalDOF 3 10 1 2
equalDOF 3 7 1 2



equalDOF 4 11 1 2
equalDOF 4 8 1 2




set TranfTag 1

geomTransf PDelta $TranfTag

set materialcol 1
set materialbeam 2
set materialbrace 3

uniaxialMaterial Steel01 $materialcol 345.e5 200000.e5 0.01

uniaxialMaterial Steel01 $materialbeam 345.e5 200000.e5 0.01

uniaxialMaterial Steel01 $materialbrace 250.e5 200000.e5 0.01

uniaxialMaterial SMA 4 27579.e5 3.5e-2 414.e5 550.e5 390.e5 200.e5




source Wsection.tcl

#W 12*96-col
Wsection 1 $materialcol 0.3226 0.3099 0.0229 0.014 13 5 13 5

#W 14*48-beam
Wsection 2 $materialbeam 0.3505 0.204 0.0151 8.636e-3 13 5 13 5

#brace-steel
source HSSsection.tcl
HSSsection 3 $materialbrace 0.2032 .0118 13 5 13 5

HSSsection 4 $materialbrace 0.1524 8.865e-3 13 5 13 5

HSSsection 5 $materialbrace 0.1016 0.0118 13 5 13 5

HSSsection 6 $materialbrace 0.127 0.0118 13 5 13 5


section Fiber 7 {
patch circ 4 13 5 0 0 0.0 0.033 0 360
}
section Fiber 8 {
patch circ 4 13 5 0 0 0.0 0.030 0 360
}
section Fiber 9 {
patch circ 4 13 5 0 0 0.0 0.0232 0 360
}



#col

element nonlinearBeamColumn 1 1 2 5 1 $TranfTag
element nonlinearBeamColumn 2 2 3 5 1 $TranfTag
element nonlinearBeamColumn 3 3 4 5 1 $TranfTag

element nonlinearBeamColumn 4 5 6 5 1 $TranfTag
element nonlinearBeamColumn 5 6 7 5 1 $TranfTag
element nonlinearBeamColumn 6 7 8 5 1 $TranfTag


#beam

element nonlinearBeamColumn 7 200 9 5 2 $TranfTag
element nonlinearBeamColumn 8 9 600 5 2 $TranfTag

element nonlinearBeamColumn 9 300 10 5 2 $TranfTag
element nonlinearBeamColumn 10 10 700 5 2 $TranfTag

element nonlinearBeamColumn 11 400 11 5 2 $TranfTag
element nonlinearBeamColumn 12 11 800 5 2 $TranfTag

#brace




element nonlinearBeamColumn 13 100 12 5 4 $TranfTag
element nonlinearBeamColumn 14 500 13 5 4 $TranfTag
element nonlinearBeamColumn 15 12 900 5 7 $TranfTag
element nonlinearBeamColumn 16 13 901 5 7 $TranfTag

element nonlinearBeamColumn 17 200 14 5 4 $TranfTag
element nonlinearBeamColumn 18 600 15 5 4 $TranfTag
element nonlinearBeamColumn 19 14 1000 5 8 $TranfTag
element nonlinearBeamColumn 20 15 1001 5 8 $TranfTag


element nonlinearBeamColumn 21 300 16 5 6 $TranfTag
element nonlinearBeamColumn 22 700 17 5 6 $TranfTag
element nonlinearBeamColumn 23 16 1100 5 9 $TranfTag
element nonlinearBeamColumn 24 17 1101 5 9 $TranfTag


rigidLink beam 100 12
rigidLink beam 500 13
rigidLink beam 200 14
rigidLink beam 600 15
rigidLink beam 300 16
rigidLink beam 700 17



#mass



mass 9 [expr 97480.62/4] 0.1 0.1
mass 10 [expr 97480.62/4] 0.1 0.1
mass 11 [expr 105468.88/4] 0.1 0.1




puts w=[eigen 4]

puts T1=[expr $pi*2/pow([lindex [eigen 4] 0 0],0.5)]
puts T2=[expr $pi*2/pow([lindex [eigen 4] 1 0],0.5)]
puts T3=[expr $pi*2/pow([lindex [eigen 4] 2 0],0.5)]
puts T4=[expr $pi*2/pow([lindex [eigen 4] 3 0],0.5)]
T6=[expr $pi*2/pow([lindex [eigen 6] 5 0],0.5)]

recorder Element -file ddd/E6SS.txt -time -ele 6 section 2 fiber 0.50 0.50 stressStrain
recorder Element -file ddd/E13SS.txt -time -ele 13 section 2 fiber 0.10 0.10 stressStrain
recorder Element -file ddd/E15SS.txt -time -ele 15 section 2 fiber 0.10 0.10 stressStrain
recorder Node -file ddd/n8dis.txt -time -node 8 -dof 1 2 disp
recorder Node -file ddd/n4dis.txt -time -node 4 -dof 1 2 disp
recorder Node -file ddd/n7dis.txt -time -node 7 -dof 1 2 disp
recorder Element -file ddd/ele13f.txt -time -ele 13 section 2 force
recorder Element -file ddd/ele13d.txt -time -ele 13 section 2 deformation
recorder Element -file ddd/ele13lf.txt -time -ele 13 localForce
recorder Node -file ddd/n900dis.txt -time -node 900 -dof 1 2 disp


recorder display DispShape 510 10 500 400 -wipe
vup 0 1 0
vpn 0 0 1
prp 2 1.50 10
display 1 5 1
#

pattern Plain 1 Linear {
#
eleLoad -ele 7 8 9 10 -type -beamUniform [expr -(112586.4/(1*9.144))]
eleLoad -ele 11 12 -type -beamUniform [expr -(96432./(1*9.144))]

}
#

#
##analysis gravity

constraints Plain
numberer Plain
system BandGeneral
test NormDispIncr 1.e-6 8
algorithm Linear
integrator LoadControl 0.1
analysis Static
analyze 10
loadConst -time 0.0;

puts "LOAD CONTROL ANALYSIS SUCCESSFUL:[getTime]"



set accel "Series -dt 0.01 -filePath la6-0.23g.txt -factor [expr 3*9.81]"

pattern UniformExcitation 2 1 -accel $accel

puts yes

#-------------------------------------------------------------------------------
#damping

set xDamp 0.05; # damping ratio
set MpropSwitch 1.0;
set KcurrSwitch 0.0;
set KcommSwitch 1.0;
set KinitSwitch 0.0;
set nEigenI 1; # mode 1
set nEigenJ 3; # mode 3
set lambdaN [eigen [expr $nEigenJ]]; # eigenvalue analysis for nEigenJ modes
set lambdaI [lindex $lambdaN [expr $nEigenI-1]]; # eigenvalue mode i
set lambdaJ [lindex $lambdaN [expr $nEigenJ-1]]; # eigenvalue mode j
set omegaI [expr pow($lambdaI,0.5)];
set omegaJ [expr pow($lambdaJ,0.5)];
set alphaM [expr $MpropSwitch*$xDamp*(2*$omegaI*$omegaJ)/($omegaI+$omegaJ)]; # M-prop. damping; D = alphaM*M
set betaKcurr [expr $KcurrSwitch*2.*$xDamp/($omegaI+$omegaJ)]; # current-K; +beatKcurr*KCurrent
set betaKcomm [expr $KcommSwitch*2.*$xDamp/($omegaI+$omegaJ)]; # last-committed K; +betaKcomm*KlastCommitt
set betaKinit [expr $KinitSwitch*2.*$xDamp/($omegaI+$omegaJ)]; # initial-K; +beatKinit*Kini
rayleigh $alphaM $betaKcurr $betaKinit $betaKcomm;


#-------------------------------------------------------------------------------

puts "groundmotion start!Time: [getTime]"
set dt 0.01
set TmaxAnalysis 40.
set nPt 4000
set deltaT 0.001




# define analysis objects and performe analysis
puts "Ground Motion Done. Start Time: [getTime]"
set tFinal [expr $dt*$nPt]; # maximum duration of ground-motion analysis
constraints Plain
numberer RCM
system BandGeneral
test NormDispIncr 1.0e-6 10
algorithm Newton
integrator Newmark 0.5 0.25
analysis Transient


set ok 0.0
set currentTime 0.0
while {$ok == 0 && $currentTime < $tFinal} {
set ok [analyze 1 $deltaT]
if {$ok != 0} {
test NormDispIncr 1e-4 2000
algorithm Newton -initial
set ok [analyze 1 $deltaT]
test NormDispIncr 1.0e-6 10
algorithm Newton
}
if {$ok != 0} {
test NormDispIncr 1.0e-6 200 1
algorithm NewtonLineSearch 0.8
set ok [analyze 1 $deltaT]
test NormDispIncr 1.0e-6 10
algorithm Newton
}
if {$ok != 0} {
test NormDispIncr 1.0e-4 2000
algorithm Newton -initialThenCurrent
set ok [analyze 1 $deltaT]
test NormDispIncr 1.0e-6 10
algorithm Newton
}
set currentTime [getTime]
}

puts "Ground Motion Done. End Time: [getTime]. tFinal: $tFinal."



#time history record
0.001
0.001
0.002
0.002
0.003
0.002
0.001
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0.002
0.002
0.001
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0.004
0.004
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0.002
0.001
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0.001
0.091
0.161
0.170
0.066
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-0.235
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-0.022
0.110
0.122
0.054
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0.022
0.032
0.017
-0.004
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-0.027
-0.046
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0.042
0.101
0.099
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0.042
0.006
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-0.040
0.027
0.048
0.008
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0.006
0.041
0.050
0.037
0.020
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-0.021
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0.048
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0.064
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0.032
0.024
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0.014
0.006
-0.013
-0.028
-0.019
0.005
0.012
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-0.034
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0.015
0.035
0.024
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0.006
0.015
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0.031
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0.123
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-0.109
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-0.027
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0.115
0.054
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0.015
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-0.006
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0.018
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0.127
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0.121
0.099
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0.158
0.119
0.073
0.045
0.030
0.016
0.002
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0.001
0.019
0.051
0.090
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0.159
0.150
0.126
0.112
0.127
0.158
0.175
0.169
0.171
0.203
0.235
0.212
0.122
0.016
-0.040
-0.027
0.016
0.042
0.043
0.049
0.082
0.120
0.122
0.081
0.032
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0.006
0.012
0.024
0.038
0.036
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-0.057
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-0.081
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0.143
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-0.141
-0.123
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-0.099
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-0.045
-0.013
0.014
0.037
0.057
0.070
0.079
0.094
0.115
0.130
0.125
0.103
0.079
0.063
0.055
0.042
0.019
-0.012
-0.040
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-0.008
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-0.083
-0.071
-0.062
-0.050
-0.037
-0.026
-0.014
0.005
0.028
0.049
0.063
0.074
0.087
0.097
0.101
0.102
0.107
0.124
0.147
0.169
0.185
0.195
0.200
0.199
0.189
0.165
0.129
0.085
0.037
-0.014
-0.061
-0.097
-0.115
-0.120
-0.122
-0.127
-0.134
-0.141
-0.142
-0.137
-0.125
-0.104
-0.074
-0.039
-0.008
0.016
0.032
0.042
0.048
0.049
0.044
0.038
0.034
0.034
0.031
0.016
-0.011
-0.043
-0.071
-0.095
-0.117
-0.137
-0.152
-0.159
-0.159
-0.159
-0.158
-0.147
-0.116
-0.063
0.001
0.060
0.107
0.139
0.160
0.174
0.183
0.188
0.189
0.189
0.192
0.199
0.202
0.199
0.188
0.174
0.155
0.126
0.083
0.032
-0.013
-0.043
-0.057
-0.060
-0.059
-0.054
-0.044
-0.028
-0.007
0.013
0.031
0.049
0.066
0.077
0.078
0.071
0.061
0.053
0.049
0.049
0.055
0.064
0.073
0.078
0.079
0.076
0.073
0.070
0.069
0.070
0.072
0.076
0.080
0.079
0.073
0.061
0.050
0.041
0.035
0.030
0.024
0.019
0.014
0.009
-0.000
-0.014
-0.034
-0.059
-0.087
-0.114
-0.134
-0.149
-0.158
-0.163
-0.166
-0.166
-0.165
-0.167
-0.165
-0.153
-0.121
-0.071
-0.016
0.032
0.066
0.085
0.090
0.083
0.067
0.049
0.035
0.026
0.018
0.009
0.001
-0.005
-0.004
-0.001
0.003
0.008
0.017
0.029
0.039
0.042
0.037
0.029
0.023
0.020
0.020
0.021
0.021
0.020
0.018
0.014
0.009
0.006
0.008
0.016
0.028
0.039
0.047
0.054
0.060
0.067
0.071
0.074
0.076
0.081
0.088
0.096
0.103
0.109
0.115
0.121
0.127
0.131
0.135
0.138
0.140
0.139
0.135
0.128
0.120
0.109
0.096
0.081
0.065
0.044
0.018
-0.008
-0.026
-0.032
-0.031
-0.030
-0.029
-0.028
-0.025
-0.021
-0.013
0.001
0.016
0.025
0.025
0.021
0.021
0.028
0.039
0.051
0.061
0.070
0.073
0.068
0.054
0.033
0.011
-0.008
-0.021
-0.032
-0.044
-0.055
-0.063
-0.066
-0.067
-0.068
-0.070
-0.071
-0.071
-0.066
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-0.017
-0.004
0.010
0.016
0.013
0.008
0.006
0.005
0.003
0.000
0.004
0.014
0.022
0.018
0.002
-0.016
-0.023
-0.014
0.001
0.008
0.002
-0.011
-0.016
-0.007
0.013
0.027
0.029
0.021
0.010
0.003
-0.001
-0.002
0.000
0.006
0.012
0.010
0.001
-0.012
-0.018
-0.013
0.000
0.013
0.016
0.010
0.001
-0.006
-0.008
-0.006
-0.004

brag006
Posts: 173
Joined: Wed Feb 15, 2012 1:26 pm
Location: University of Auckland

Re: problem converge

Post by brag006 » Tue Nov 12, 2013 3:20 pm

You need to tell people what the error is. You can expect people just to review your code for you.

mhscott
Posts: 874
Joined: Tue Jul 06, 2004 3:38 pm
Location: Corvallis, Oregon USA
Contact:

Re: problem converge

Post by mhscott » Tue Nov 12, 2013 4:03 pm

I agree, some forethought as to what you think the problem is would be incredibly helpful if someone is going to run your code.

ehsanala
Posts: 48
Joined: Wed Nov 14, 2012 12:27 am

Re: problem converge

Post by ehsanala » Tue Nov 12, 2013 9:13 pm

Why is not the end of the analysis?
do not draw Force-displacement curve?

brag006
Posts: 173
Joined: Wed Feb 15, 2012 1:26 pm
Location: University of Auckland

Re: problem converge

Post by brag006 » Tue Nov 12, 2013 9:42 pm

Who told you opensees can draw a force-displacement curve? OpenSees has no pre or post processor built in.

ehsanala
Posts: 48
Joined: Wed Nov 14, 2012 12:27 am

Re: problem converge

Post by ehsanala » Wed Nov 13, 2013 6:30 am

Why is not the end of the analysis?

brag006
Posts: 173
Joined: Wed Feb 15, 2012 1:26 pm
Location: University of Auckland

Re: problem converge

Post by brag006 » Wed Nov 13, 2013 12:39 pm

i don't understand your question

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