Chaste Release::3.1
VolumeDependentAveragedSourcePde.cpp
00001 /*
00002 
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00034 */
00035 
00036 #include "VolumeDependentAveragedSourcePde.hpp"
00037 #include "ApoptoticCellProperty.hpp"
00038 
00039 template<unsigned DIM>
00040 VolumeDependentAveragedSourcePde<DIM>::VolumeDependentAveragedSourcePde(AbstractCellPopulation<DIM>& rCellPopulation, double coefficient)
00041     : AveragedSourcePde<DIM>(rCellPopulation, coefficient)
00042 {
00043     assert(dynamic_cast<NodeBasedCellPopulation<DIM>*>(&(this->mrCellPopulation)));
00044     mpStaticCastCellPopulation = static_cast<NodeBasedCellPopulation<DIM>*>(&(this->mrCellPopulation));
00045 }
00046 
00047 template<unsigned DIM>
00048 void VolumeDependentAveragedSourcePde<DIM>::SetupSourceTerms(TetrahedralMesh<DIM,DIM>& rCoarseMesh,  std::map< CellPtr, unsigned >* pCellPdeElementMap) // must be called before solve
00049 {
00050     // Allocate memory
00051     this->mCellDensityOnCoarseElements.resize(rCoarseMesh.GetNumElements());
00052     for (unsigned elem_index=0; elem_index<this->mCellDensityOnCoarseElements.size(); elem_index++)
00053     {
00054         this->mCellDensityOnCoarseElements[elem_index] = 0.0;
00055     }
00056 
00057     // Loop over cells, find which coarse element it is in, and add volume to the mSourceTermOnCoarseElements[elem_index];
00058     for (typename AbstractCellPopulation<DIM>::Iterator cell_iter = this->mrCellPopulation.Begin();
00059          cell_iter != this->mrCellPopulation.End();
00060          ++cell_iter)
00061     {
00062         unsigned elem_index = 0;
00063         const ChastePoint<DIM>& r_position_of_cell = this->mrCellPopulation.GetLocationOfCellCentre(*cell_iter);
00064 
00065         if (pCellPdeElementMap != NULL)
00066         {
00067             elem_index = (*pCellPdeElementMap)[*cell_iter];
00068         }
00069         else
00070         {
00071             elem_index = rCoarseMesh.GetContainingElementIndex(r_position_of_cell);
00072         }
00073 
00074         unsigned node_index = this->mrCellPopulation.GetLocationIndexUsingCell(*cell_iter);
00075 
00076         // Uptake normalised to 1 for unit cell
00077         double radius = mpStaticCastCellPopulation->rGetMesh().GetCellRadius(node_index);
00078         double cell_weight = radius*radius;
00079 
00080         bool cell_is_apoptotic = cell_iter->template HasCellProperty<ApoptoticCellProperty>();
00081         if (!cell_is_apoptotic)
00082         {
00083             this->mCellDensityOnCoarseElements[elem_index] += cell_weight;
00084         }
00085     }
00086 
00087     // Then divide each entry of mSourceTermOnCoarseElements by the element's area
00088     c_matrix<double, DIM, DIM> jacobian;
00089     double det;
00090     for (unsigned elem_index=0; elem_index<this->mCellDensityOnCoarseElements.size(); elem_index++)
00091     {
00092         rCoarseMesh.GetElement(elem_index)->CalculateJacobian(jacobian, det);
00093         this->mCellDensityOnCoarseElements[elem_index] /= rCoarseMesh.GetElement(elem_index)->GetVolume(det);
00094     }
00095 }
00096 
00098 // Explicit instantiation
00100 
00101 template class VolumeDependentAveragedSourcePde<1>;
00102 template class VolumeDependentAveragedSourcePde<2>;
00103 template class VolumeDependentAveragedSourcePde<3>;
00104 
00105 // Serialization for Boost >= 1.36
00106 #include "SerializationExportWrapperForCpp.hpp"
00107 EXPORT_TEMPLATE_CLASS_SAME_DIMS(VolumeDependentAveragedSourcePde)