1 | import numpy
|
---|
2 | from model import *
|
---|
3 | from triangle import *
|
---|
4 | from setmask import *
|
---|
5 | from parameterize import *
|
---|
6 | from setflowequation import *
|
---|
7 | from EnumDefinitions import *
|
---|
8 | from solve import *
|
---|
9 | from MatlabFuncs import *
|
---|
10 |
|
---|
11 | md=triangle(model(),'../Exp/Square.exp',150000.)
|
---|
12 | md=setmask(md,'','')
|
---|
13 | md=parameterize(md,'../Par/SquareSheetConstrained.py')
|
---|
14 | md.extrude(5,1.)
|
---|
15 | md=setflowequation(md,'hutter','all')
|
---|
16 | md.cluster=generic('name',oshostname(),'np',3)
|
---|
17 | md.timestepping.time_adapt=1
|
---|
18 | md.timestepping.final_time=500.
|
---|
19 | md=solve(md,TransientSolutionEnum())
|
---|
20 |
|
---|
21 | #Fields and tolerances to track changes
|
---|
22 | field_names =['Vx1','Vy1','Vz1','Vel1','Pressure1','Bed1','Surface1','Thickness1','Temperature1','BasalforcingsMeltingRate1',\
|
---|
23 | 'Vx2','Vy2','Vz2','Vel2','Pressure2','Bed2','Surface2','Thickness2','Temperature2','BasalforcingsMeltingRate2']
|
---|
24 | #'Vx3','Vy3','Vz3','Vel3','Pressure3','Bed3','Surface3','Thickness3','Temperature3','BasalforcingsMeltingRate3']
|
---|
25 | field_tolerances=[1e-13, 1e-13,1e-13,1e-13,1e-13,1e-13,1e-13,1e-13,1e-13,1e-13,\
|
---|
26 | 5*1e-11,1e-13,1e-13,1e-13,1e-13,1e-13,1e-13,1e-13,1e-13,1e-13,\
|
---|
27 | 1e-10, 1e-13,1e-13,1e-13,1e-13,1e-13,1e-13,1e-13,1e-13,1e-13]
|
---|
28 | field_values=[\
|
---|
29 | md.results['TransientSolution'][1]['Vx'],\
|
---|
30 | md.results['TransientSolution'][1]['Vy'],\
|
---|
31 | md.results['TransientSolution'][1]['Vz'],\
|
---|
32 | md.results['TransientSolution'][1]['Vel'],\
|
---|
33 | md.results['TransientSolution'][1]['Pressure'],\
|
---|
34 | md.results['TransientSolution'][1]['Bed'],\
|
---|
35 | md.results['TransientSolution'][1]['Surface'],\
|
---|
36 | md.results['TransientSolution'][1]['Thickness'],\
|
---|
37 | md.results['TransientSolution'][1]['Temperature'],\
|
---|
38 | md.results['TransientSolution'][1]['BasalforcingsMeltingRate'],\
|
---|
39 | md.results['TransientSolution'][2]['Vx'],\
|
---|
40 | md.results['TransientSolution'][2]['Vy'],\
|
---|
41 | md.results['TransientSolution'][2]['Vz'],\
|
---|
42 | md.results['TransientSolution'][2]['Vel'],\
|
---|
43 | md.results['TransientSolution'][2]['Pressure'],\
|
---|
44 | md.results['TransientSolution'][2]['Bed'],\
|
---|
45 | md.results['TransientSolution'][2]['Surface'],\
|
---|
46 | md.results['TransientSolution'][2]['Thickness'],\
|
---|
47 | md.results['TransientSolution'][2]['Temperature'],\
|
---|
48 | md.results['TransientSolution'][2]['BasalforcingsMeltingRate'],\
|
---|
49 | # md.results['TransientSolution'][3]['Vx'],\
|
---|
50 | # md.results['TransientSolution'][3]['Vy'],\
|
---|
51 | # md.results['TransientSolution'][3]['Vz'],\
|
---|
52 | # md.results['TransientSolution'][3]['Vel'],\
|
---|
53 | # md.results['TransientSolution'][3]['Pressure'],\
|
---|
54 | # md.results['TransientSolution'][3]['Bed'],\
|
---|
55 | # md.results['TransientSolution'][3]['Surface'],\
|
---|
56 | # md.results['TransientSolution'][3]['Thickness'],\
|
---|
57 | # md.results['TransientSolution'][3]['Temperature'],\
|
---|
58 | # md.results['TransientSolution'][3]['BasalforcingsMeltingRate'],\
|
---|
59 | ]
|
---|