source: issm/trunk-jpl/test/Par/SquareSheetConstrained.py@ 21409

Last change on this file since 21409 was 21409, checked in by bdef, 8 years ago

CHG: mooving to real vector initialisation (N) in place of (N,1)

  • Property svn:executable set to *
File size: 3.0 KB
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1import os.path
2import numpy
3import inspect
4from verbose import verbose
5from InterpFromMeshToMesh2d import InterpFromMeshToMesh2d
6from paterson import paterson
7from SetIceSheetBC import SetIceSheetBC
8from arch import *
9
10#Start defining model parameters here
11
12#Geometry
13hmin=300.
14hmax=1000.
15ymin=numpy.min(md.mesh.y)
16ymax=numpy.max(md.mesh.y)
17xmin=min(md.mesh.x)
18xmax=max(md.mesh.x)
19md.geometry.thickness=hmax+(hmin-hmax)*(md.mesh.y-ymin)/(ymax-ymin)+0.1*(hmin-hmax)*(md.mesh.x-xmin)/(xmax-xmin)
20md.geometry.base=-md.materials.rho_ice/md.materials.rho_water*md.geometry.thickness+20.
21md.geometry.surface=md.geometry.base+md.geometry.thickness
22
23#Initial velocity
24x = numpy.array(archread('../Data/SquareSheetConstrained.arch','x'))
25y = numpy.array(archread('../Data/SquareSheetConstrained.arch','y'))
26vx = numpy.array(archread('../Data/SquareSheetConstrained.arch','vx'));
27vy = numpy.array(archread('../Data/SquareSheetConstrained.arch','vy'));
28index = archread('../Data/SquareSheetConstrained.arch','index').astype(int);
29
30[md.initialization.vx]=InterpFromMeshToMesh2d(index,x,y,vx,md.mesh.x,md.mesh.y)
31[md.initialization.vy]=InterpFromMeshToMesh2d(index,x,y,vy,md.mesh.x,md.mesh.y)
32md.initialization.vz=numpy.zeros((md.mesh.numberofvertices))
33md.initialization.pressure=numpy.zeros((md.mesh.numberofvertices))
34
35#Materials
36md.initialization.temperature=(273.-20.)*numpy.ones((md.mesh.numberofvertices))
37md.materials.rheology_B=paterson(md.initialization.temperature)
38md.materials.rheology_n=3.*numpy.ones((md.mesh.numberofelements))
39
40#Calving
41md.calving.calvingrate=0.*numpy.ones((md.mesh.numberofvertices))
42md.levelset.spclevelset=float('NaN')*numpy.ones((md.mesh.numberofvertices))
43
44#Friction
45md.friction.coefficient=20.*numpy.ones((md.mesh.numberofvertices))
46md.friction.coefficient[numpy.nonzero(md.mask.groundedice_levelset<0.)[0]]=0.
47md.friction.p=numpy.ones((md.mesh.numberofelements))
48md.friction.q=numpy.ones((md.mesh.numberofelements))
49
50#Numerical parameters
51md.stressbalance.viscosity_overshoot=0.0
52md.masstransport.stabilization=1.
53md.thermal.stabilization=1.
54md.verbose=verbose(0)
55md.settings.waitonlock=30
56md.stressbalance.restol=0.05
57md.steadystate.reltol=0.05
58md.stressbalance.reltol=0.05
59md.stressbalance.abstol=float('NaN')
60md.timestepping.time_step=1.
61md.timestepping.final_time=3.
62
63#GIA:
64md.gia.lithosphere_thickness=100.*numpy.ones((md.mesh.numberofvertices)); # in km
65md.gia.mantle_viscosity=1.*10**21*numpy.ones((md.mesh.numberofvertices)); # in Pa.s
66md.materials.lithosphere_shear_modulus=6.7*10**10; # in Pa
67md.materials.lithosphere_density=3.32; # in g/cm^-3
68md.materials.mantle_shear_modulus=1.45*10**11; # in Pa
69md.materials.mantle_density=3.34; # in g/cm^-3
70
71#Boundary conditions:
72md=SetIceSheetBC(md)
73
74#Change name so that no test have the same name
75if len(inspect.stack()) > 2:
76 md.miscellaneous.name = os.path.basename(inspect.stack()[2][1]).split('.')[0]
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