[19105] | 1 | %Test Name: SquareSheetConstrainedExtrudedHydrologyDC
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[16562] | 2 | md=triangle(model(),'../Exp/Square.exp',100000.);
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| 3 | md=setmask(md,'','');
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[17806] | 4 | md.transient=deactivateall(md.transient);
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| 5 | md.transient.ishydrology=1;
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[21729] | 6 | md=parameterize(md,'../Par/IceCube.par');
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[16562] | 7 | md=setflowequation(md,'SSA','all');
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| 8 | md.cluster=generic('name',oshostname(),'np',1);
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| 9 | md.hydrology=(hydrologydc);
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[17806] | 10 | md.hydrology=initialize(md.hydrology,md);
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[16562] | 11 | md.hydrology.isefficientlayer=0;
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| 12 | md.hydrology.sedimentlimit_flag=1;
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| 13 | md.hydrology.sedimentlimit=8000.0;
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| 14 | md.initialization.sediment_head=0.0*ones(md.mesh.numberofvertices,1);
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| 15 | md.hydrology.spcsediment_head=NaN*ones(md.mesh.numberofvertices,1);
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| 16 | pos=find(md.mesh.y==0);
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| 17 | md.hydrology.spcsediment_head(pos)=0.0;
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[18301] | 18 | md.basalforcings.groundedice_melting_rate = 2.0*ones(md.mesh.numberofvertices,1);
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| 19 | md.basalforcings.floatingice_melting_rate = 0.0*ones(md.mesh.numberofvertices,1);
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[17806] | 20 | md.hydrology.sediment_transmitivity= 3.0*ones(md.mesh.numberofvertices,1);
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[16562] | 21 | md.timestepping.time_step=0;
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| 22 | md.timestepping.final_time=1.0;
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| 23 | md=extrude(md,3,1.1);
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[21341] | 24 | md=solve(md,'Hydrology');
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[16562] | 25 |
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| 26 | %Fields and tolerances to track changes
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| 27 | %you can also compare with an analitic solution, but it is exact
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| 28 | %only if no limits are applied
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| 29 | %analitic=(md.mesh.y.^2-2*md.mesh.y*1.0e6)*(-2.0/(2*md.constants.yts*md.hydrology.sediment_transmitivity))
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| 30 | field_names ={'SedimentWaterHead','SedimentHeadResidual'};
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[17806] | 31 | field_tolerances={1e-13, 3e-10};
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| 32 | field_values={md.results.HydrologySolution.SedimentHead,md.results.HydrologySolution.SedimentHeadResidual};
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