import os.path import inspect from arch import * import numpy from verbose import verbose from InterpFromMeshToMesh2d import InterpFromMeshToMesh2d from paterson import paterson from SetMarineIceSheetBC import SetMarineIceSheetBC #Start defining model parameters here #Geometry and observation x = numpy.array(archread('../Data/Pig.arch','x')) y = numpy.array(archread('../Data/Pig.arch','y')) vx_obs = numpy.array(archread('../Data/Pig.arch','vx_obs')) vy_obs = numpy.array(archread('../Data/Pig.arch','vy_obs')) index = numpy.array(archread('../Data/Pig.arch','index')).astype(int) surface = numpy.array(archread('../Data/Pig.arch','surface')) thickness = numpy.array(archread('../Data/Pig.arch','thickness')) [md.inversion.vx_obs] =InterpFromMeshToMesh2d(index,x,y,vx_obs,md.mesh.x,md.mesh.y) [md.inversion.vy_obs] =InterpFromMeshToMesh2d(index,x,y,vy_obs,md.mesh.x,md.mesh.y) [md.geometry.surface] =InterpFromMeshToMesh2d(index,x,y,surface,md.mesh.x,md.mesh.y) [md.geometry.thickness]=InterpFromMeshToMesh2d(index,x,y,thickness,md.mesh.x,md.mesh.y) md.geometry.base=md.geometry.surface-md.geometry.thickness md.initialization.vx=md.inversion.vx_obs md.initialization.vy=md.inversion.vy_obs md.initialization.vz=numpy.zeros((md.mesh.numberofvertices)) md.initialization.pressure=numpy.zeros((md.mesh.numberofvertices)) #Materials md.initialization.temperature=(273.-20.)*numpy.ones((md.mesh.numberofvertices)) md.materials.rheology_B=paterson(md.initialization.temperature) md.materials.rheology_n=3.*numpy.ones((md.mesh.numberofelements)) md.initialization.temperature=md.initialization.temperature #Friction md.friction.coefficient=50.*numpy.ones((md.mesh.numberofvertices)) md.friction.coefficient[numpy.nonzero(md.mask.groundedice_levelset<0.)[0]]=0. md.friction.p=numpy.ones((md.mesh.numberofelements)) md.friction.q=numpy.ones((md.mesh.numberofelements)) #Numerical parameters md.masstransport.stabilization=1. md.verbose=verbose(0) md.settings.waitonlock=30 md.timestepping.time_step=1. md.timestepping.final_time=2. md.stressbalance.restol=0.05 md.stressbalance.reltol=1. md.steadystate.reltol=1. md.stressbalance.abstol=float('nan') #Boundary conditions: md=SetMarineIceSheetBC(md) #Change name so that no test have the same name if len(inspect.stack()) > 2: md.miscellaneous.name = os.path.basename(inspect.stack()[2][1]).split('.')[0]