[Getdp] Help with "Warning: Invalid choice (-1) for option 0"
Edward Jerjian
edward.jerjian at mail.mcgill.ca
Thu May 14 21:25:06 CEST 2009
Hello,
Please help, I'm new to gmsh and getdp! I'm trying to set up an electrostatic problem to calculate the stored ES energy, and eventually the capacitance of my shape. The shape is a pyramid, the .msh and .pro files are below.
I keep getting an error on the console when trying to launch it in gmsh using the solver getdp -- "Warning: Invalid choice (-1) for option 0." I tried to find some documentation on this, but was unsuccessful. I would appreciate any suggestions to the .pro file and fixing this warning. Oh, in pyramid.pro, I'm trying to define the pyramid's basic five nodes in Group for later boundary condition assignments in Constraint.
Edward
------------------------------------------------------------------------------------------------
PRO FILE: pyramid.pro
Group {
PyramidVolume = Region[3];
E = ElementsOf[PyramidVolume];
N = NodesOf[E];
N0 = NodesOf[E(5)];
N1 = NodesOf[E(4)];
N2 = NodesOf[E(3)];
N3 = NodesOf[E(2)];
N4 = NodesOf[E(1)];
Domain = Global[All];
}
Function {
mu0 = 4.e-7*Pi;
}
Constraint {
{ Name Dirichlet; Type Assign;
Case {
{ Region N0 ; Value 1.;}
{ Region N1 ; Value 0.;}
{ Region N2 ; Value 0.;}
{ Region N3 ; Value 0.;}
{ Region N4 ; Value 0.;}
}
}
}
FunctionSpace {
{ Name Hgrad_v; Type Form0;
BasisFunction {
{ Name sn; NameOfCoef vn; Function BF_Node;
Support Domain; Entity NodesOf[All]; }
}
Constraint {
{ NameOfCoef vn; EntityType NodesOf;
NameOfConstraint Dirichlet; }
}
}
}
Jacobian {
{ Name Vol;
Case {
{ Region PyramidVolume; Jacobian Vol; }
}
}
}
Integration {
{ Name I1 ;
Case {
{ Type Gauss ;
Case {
{ GeoElement Triangle ; NumberOfPoints 4 ; }
{ GeoElement Quadrangle ; NumberOfPoints 4 ; }
{ GeoElement Tetrahedron ; NumberOfPoints 4 ; }
}
}
}
}
}
Formulation {
{ Name Electrostatics_v; Type FemEquation;
Quantity {
{ Name v; Type Local; NameOfSpace Hgrad_v; }
}
Equation {
Galerkin { [ mu0 * Dof{Grad v} , {Grad v} ];
In Domain; Jacobian Vol; Integration I1; }
}
}
}
Resolution {
{ Name Electrostatics_v;
System {
{ Name Sys_Ele; NameOfFormulation Electrostatics_v; }
}
Operation {
Generate[Sys_Ele]; Solve[Sys_Ele]; SaveSolution[Sys_Ele];
}
}
}
PostProcessing {
{ Name EleSta_v; NameOfFormulation Electrostatics_v;
Quantity {
{ Name v; Value { Local { [ {v} ]; In Domain; } } }
{ Name e; Value { Local { [ -{Grad v} ]; In Domain; } } }
{ Name d; Value { Local { [ -mu0*mu0 *{Grad v} ];
In Domain; } } }
}
}
}
PostOperation {
{ Name Map_v_e; NameOfPostProcessing EleSta_v ;
Operation {
Print [ v, OnElementsOf PyramidVolume, File "map_v.pos" ];
Print [ e, OnElementsOf PyramidVolume, File "map_e.pos" ];
}
}
}
-------------------------------------------------------------------------------------------------------
MESH FILE: pyramid.msh
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$EndElements