BidomainWithBathAssembler.cpp
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00030 #include "BidomainWithBathAssembler.hpp"
00031
00032 template<unsigned ELEMENT_DIM, unsigned SPACE_DIM>
00033 c_matrix<double,2*(ELEMENT_DIM+1),2*(ELEMENT_DIM+1)>
00034 BidomainWithBathAssembler<ELEMENT_DIM,SPACE_DIM>::ComputeMatrixTerm(
00035 c_vector<double, ELEMENT_DIM+1> &rPhi,
00036 c_matrix<double, SPACE_DIM, ELEMENT_DIM+1> &rGradPhi,
00037 ChastePoint<SPACE_DIM> &rX,
00038 c_vector<double,2> &rU,
00039 c_matrix<double, 2, SPACE_DIM> &rGradU ,
00040 Element<ELEMENT_DIM,SPACE_DIM>* pElement)
00041 {
00042 if (!HeartRegionCode::IsRegionBath( pElement->GetRegion() ))
00043 {
00044 return BidomainAssembler<ELEMENT_DIM,SPACE_DIM>::ComputeMatrixTerm(rPhi,rGradPhi,rX,rU,rGradU,pElement);
00045 }
00046 else
00047 {
00048 double bath_cond=HeartConfig::Instance()->GetBathConductivity(pElement->GetRegion());
00049
00050 c_matrix<double, ELEMENT_DIM+1, ELEMENT_DIM+1> grad_phi_sigma_b_grad_phi =
00051 bath_cond * prod(trans(rGradPhi), rGradPhi);
00052
00053 c_matrix<double,2*(ELEMENT_DIM+1),2*(ELEMENT_DIM+1)> ret = zero_matrix<double>(2*(ELEMENT_DIM+1));
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00071 matrix_slice<c_matrix<double, 2*ELEMENT_DIM+2, 2*ELEMENT_DIM+2> >
00072 slice11(ret, slice (1, 2, ELEMENT_DIM+1), slice (1, 2, ELEMENT_DIM+1));
00073 slice11 = grad_phi_sigma_b_grad_phi;
00074
00075 return ret;
00076 }
00077 }
00078
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00085 template class BidomainWithBathAssembler<1,1>;
00086 template class BidomainWithBathAssembler<2,2>;
00087 template class BidomainWithBathAssembler<3,3>;