Chaste Release::3.1
ExtendedBidomainNeumannSurfaceTermAssembler.hpp
00001 /*
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00035 
00036 #ifndef EXTENDEDBIDOMAINNEUMANNSURFACETERMASSEMBLER_HPP_
00037 #define EXTENDEDBIDOMAINNEUMANNSURFACETERMASSEMBLER_HPP_
00038 
00039 #include "AbstractFeSurfaceIntegralAssembler.hpp"
00040 
00041 
00049 template<unsigned ELEMENT_DIM, unsigned SPACE_DIM>
00050 class ExtendedBidomainNeumannSurfaceTermAssembler : public AbstractFeSurfaceIntegralAssembler<ELEMENT_DIM,SPACE_DIM,3>
00051 {
00052 protected:
00070     virtual c_vector<double, 3*ELEMENT_DIM> ComputeVectorSurfaceTerm(
00071         const BoundaryElement<ELEMENT_DIM-1,SPACE_DIM> &rSurfaceElement,
00072         c_vector<double,ELEMENT_DIM> &rPhi,
00073         ChastePoint<SPACE_DIM> &rX);
00074 
00075 public:
00083     ExtendedBidomainNeumannSurfaceTermAssembler(AbstractTetrahedralMesh<ELEMENT_DIM,SPACE_DIM>* pMesh,
00084                                         BoundaryConditionsContainer<ELEMENT_DIM,SPACE_DIM,3>* pBoundaryConditions,
00085                                         unsigned numQuadPoints = 2)
00086         : AbstractFeSurfaceIntegralAssembler<ELEMENT_DIM,SPACE_DIM,3>(pMesh, pBoundaryConditions, numQuadPoints)
00087     {
00088     }
00089 };
00090 
00091 
00092 #define COVERAGE_IGNORE //no non-zero Neumann BC allowed at the moment in extended bidomain problems
00093 template<unsigned ELEMENT_DIM, unsigned SPACE_DIM>
00094 c_vector<double, 3*ELEMENT_DIM> ExtendedBidomainNeumannSurfaceTermAssembler<ELEMENT_DIM,SPACE_DIM>::ComputeVectorSurfaceTerm(
00095     const BoundaryElement<ELEMENT_DIM-1,SPACE_DIM> &rSurfaceElement,
00096     c_vector<double,ELEMENT_DIM> &rPhi,
00097     ChastePoint<SPACE_DIM> &rX)
00098 {
00099     // D_times_gradu_dot_n = [D grad(u)].n, D=diffusion matrix
00100     double sigma_i_times_grad_phi_i_first_cell_dot_n = this->mpBoundaryConditions->GetNeumannBCValue(&rSurfaceElement, rX, 0);
00101     double sigma_i_times_grad_phi_i_second_cell_dot_n = this->mpBoundaryConditions->GetNeumannBCValue(&rSurfaceElement, rX, 1);
00102     double sigma_e_times_grad_phi_e_dot_n = this->mpBoundaryConditions->GetNeumannBCValue(&rSurfaceElement, rX, 2);
00103 
00104     c_vector<double, 3*ELEMENT_DIM> ret;
00105 
00106     for (unsigned i=0; i<3*ELEMENT_DIM; i = i + 3)
00107     {
00108         ret(i) = rPhi(i)*sigma_i_times_grad_phi_i_first_cell_dot_n;
00109         ret(i+1) = rPhi(i)*sigma_i_times_grad_phi_i_second_cell_dot_n;
00110         ret(i+2) = rPhi(i)*(sigma_i_times_grad_phi_i_first_cell_dot_n + sigma_i_times_grad_phi_i_second_cell_dot_n + sigma_e_times_grad_phi_e_dot_n);
00111     }
00112     return ret;
00113 }
00114 #undef COVERAGE_IGNORE
00115 
00116 #endif // EXTENDEDBIDOMAINNEUMANNSURFACETERMASSEMBLER_HPP_