1 | from model import *
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2 | from triangle import *
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3 | from setmask import *
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4 | from parameterize import *
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5 | from setflowequation import *
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6 | from EnumDefinitions import *
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7 | from solve import *
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8 | from MatlabFuncs import *
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9 |
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10 | md=triangle(model(),'../Exp/Square.exp',180000)
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11 | md=setmask(md,'all','')
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12 | md=parameterize(md,'../Par/SquareShelfConstrained.py')
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13 | md.extrude(3,1.)
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14 | md=setflowequation(md,'macayeal','all')
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15 | md.cluster=generic('name',oshostname(),'np',3);
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16 | md.initialization.waterfraction=numpy.zeros((md.mesh.numberofvertices,1))
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17 | md.transient.isdiagnostic=0
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18 | md.transient.isprognostic=0
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19 | md.transient.isthermal=1
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20 | md.transient.isgroundingline=0
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21 | md.thermal.isenthalpy=1
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22 | md=solve(md,TransientSolutionEnum())
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23 |
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24 | #Fields and tolerances to track changes
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25 | field_names =['Enthalpy1','Waterfraction1','Temperature1',\
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26 | 'Enthalpy2','Waterfraction2','Temperature2',\
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27 | 'Enthalpy3','Waterfraction3','Temperature3']
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28 | field_tolerances=[1e-13,1e-13,1e-13,1e-13,1e-13,1e-13,1e-13,1e-10,1e-13]
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29 | field_values=[\
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30 | md.results['TransientSolution'][1]['Enthalpy'],\
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31 | md.results['TransientSolution'][1]['Waterfraction'],\
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32 | md.results['TransientSolution'][1]['Temperature'],\
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33 | md.results['TransientSolution'][2]['Enthalpy'],\
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34 | md.results['TransientSolution'][2]['Waterfraction'],\
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35 | md.results['TransientSolution'][2]['Temperature'],\
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36 | md.results['TransientSolution'][3]['Enthalpy'],\
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37 | md.results['TransientSolution'][3]['Waterfraction'],\
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38 | md.results['TransientSolution'][3]['Temperature'],\
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39 | ]
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