MonodomainAssembler.hpp

00001 /*
00002 
00003 Copyright (C) University of Oxford, 2005-2010
00004 
00005 University of Oxford means the Chancellor, Masters and Scholars of the
00006 University of Oxford, having an administrative office at Wellington
00007 Square, Oxford OX1 2JD, UK.
00008 
00009 This file is part of Chaste.
00010 
00011 Chaste is free software: you can redistribute it and/or modify it
00012 under the terms of the GNU Lesser General Public License as published
00013 by the Free Software Foundation, either version 2.1 of the License, or
00014 (at your option) any later version.
00015 
00016 Chaste is distributed in the hope that it will be useful, but WITHOUT
00017 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
00018 FITNESS FOR A PARTICULAR PURPOSE.  See the GNU Lesser General Public
00019 License for more details. The offer of Chaste under the terms of the
00020 License is subject to the License being interpreted in accordance with
00021 English Law and subject to any action against the University of Oxford
00022 being under the jurisdiction of the English Courts.
00023 
00024 You should have received a copy of the GNU Lesser General Public License
00025 along with Chaste. If not, see <http://www.gnu.org/licenses/>.
00026 
00027 */
00028 
00029 #ifndef MONODOMAINASSEMBLER_HPP_
00030 #define MONODOMAINASSEMBLER_HPP_
00031 
00032 
00033 #include "AbstractFeObjectAssembler.hpp"
00034 #include "MonodomainTissue.hpp"
00035 
00040 template<unsigned ELEMENT_DIM, unsigned SPACE_DIM>
00041 class MonodomainAssembler
00042    : public AbstractFeObjectAssembler<ELEMENT_DIM,SPACE_DIM,1,true,true,CARDIAC>
00043 {
00044 protected:
00046     MonodomainTissue<ELEMENT_DIM,SPACE_DIM>* mpMonodomainTissue;
00047 
00049     HeartConfig* mpConfig;
00050 
00052     double mIionic;
00054     double mIIntracellularStimulus;
00055 
00057     double mDt;
00058 
00072     c_matrix<double,1*(ELEMENT_DIM+1),1*(ELEMENT_DIM+1)> ComputeMatrixTerm(
00073                 c_vector<double, ELEMENT_DIM+1> &rPhi,
00074                 c_matrix<double, SPACE_DIM, ELEMENT_DIM+1> &rGradPhi,
00075                 ChastePoint<SPACE_DIM> &rX,
00076                 c_vector<double,1> &rU,
00077                 c_matrix<double, 1, SPACE_DIM> &rGradU /* not used */,
00078                 Element<ELEMENT_DIM,SPACE_DIM>* pElement);
00079 
00093     c_vector<double,1*(ELEMENT_DIM+1)> ComputeVectorTerm(
00094                 c_vector<double, ELEMENT_DIM+1> &rPhi,
00095                 c_matrix<double, SPACE_DIM, ELEMENT_DIM+1> &rGradPhi /* not used */,
00096                 ChastePoint<SPACE_DIM> &rX /* not used */,
00097                 c_vector<double,1> &rU,
00098                 c_matrix<double, 1, SPACE_DIM> &rGradU /* not used */,
00099                 Element<ELEMENT_DIM,SPACE_DIM>* pElement /* not used */);
00100 
00112     c_vector<double, ELEMENT_DIM> ComputeVectorSurfaceTerm(
00113                 const BoundaryElement<ELEMENT_DIM-1,SPACE_DIM>& rSurfaceElement,
00114                 c_vector<double, ELEMENT_DIM>& rPhi,
00115                 ChastePoint<SPACE_DIM>& rX);
00116 
00117     
00121     void ResetInterpolatedQuantities( void )
00122     {
00123         mIionic = 0;
00124         mIIntracellularStimulus = 0;
00125     }
00126     
00133     void IncrementInterpolatedQuantities(double phiI, const Node<SPACE_DIM>* pNode);
00134 
00135 public:
00136 
00145     MonodomainAssembler(AbstractTetrahedralMesh<ELEMENT_DIM,SPACE_DIM>* pMesh,
00146                         MonodomainTissue<ELEMENT_DIM,SPACE_DIM>* pTissue,
00147                         double dt,
00148                         unsigned numQuadPoints = 2);
00149 };
00150 
00151 #endif /*MONODOMAINASSEMBLER_HPP_*/

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