Chaste Release::3.1
SolidMechanicsProblemDefinition.hpp
00001 /*
00002 
00003 Copyright (c) 2005-2012, University of Oxford.
00004 All rights reserved.
00005 
00006 University of Oxford means the Chancellor, Masters and Scholars of the
00007 University of Oxford, having an administrative office at Wellington
00008 Square, Oxford OX1 2JD, UK.
00009 
00010 This file is part of Chaste.
00011 
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00022 
00023 THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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00034 */
00035 
00036 
00037 #ifndef SOLIDMECHANICSPROBLEMDEFINITION_HPP_
00038 #define SOLIDMECHANICSPROBLEMDEFINITION_HPP_
00039 
00040 #include "ContinuumMechanicsProblemDefinition.hpp"
00041 
00048 template<unsigned DIM>
00049 class SolidMechanicsProblemDefinition : public ContinuumMechanicsProblemDefinition<DIM>
00050 {
00051 private:
00053     // material law
00055 
00060     std::vector<AbstractIncompressibleMaterialLaw<DIM>*> mIncompressibleMaterialLaws;
00066     std::vector<AbstractCompressibleMaterialLaw<DIM>*> mCompressibleMaterialLaws;
00067 
00069     bool mIsHomogeneousMaterial;
00070 
00072     CompressibilityType mCompressibilityType;
00073 
00075     bool mSolveUsingSnes;
00076 
00084     void CheckCastSuccess(CompressibilityType compressibilityType,AbstractMaterialLaw<DIM>* pMaterialLaw);
00085 
00086 public:
00091     SolidMechanicsProblemDefinition(QuadraticMesh<DIM>& rMesh);
00092 
00094     virtual ~SolidMechanicsProblemDefinition()
00095     {
00096     }
00097 
00098 
00107     void SetMaterialLaw(CompressibilityType compressibilityType, AbstractMaterialLaw<DIM>* pMaterialLaw);
00108 
00118     void SetMaterialLaw(CompressibilityType compressibilityType, std::vector<AbstractMaterialLaw<DIM>*>& rMaterialLaws);
00119 
00124     bool IsHomogeneousMaterial();
00125 
00126 
00132     CompressibilityType GetCompressibilityType();
00133 
00140     AbstractIncompressibleMaterialLaw<DIM>* GetIncompressibleMaterialLaw(unsigned elementIndex);
00141 
00148     AbstractCompressibleMaterialLaw<DIM>* GetCompressibleMaterialLaw(unsigned elementIndex);
00149 
00154     void SetZeroDisplacementNodes(std::vector<unsigned>& rFixedNodes)
00155     {
00156         this->SetZeroDirichletNodes(rFixedNodes);
00157     }
00158 
00166     void SetFixedNodes(std::vector<unsigned>& rFixedNodes, std::vector<c_vector<double,DIM> >& rFixedNodeLocation);
00167 
00172     virtual void Validate();
00173 
00175     // The following methods set parameters used by the solver class
00176     // (AbstractNonlinearElasticitySolver). It is not ideal that they are
00177     // stored in this class - it would be nicer if this class was just about
00178     // the problem, not how it is solver - but in the absence of a globally
00179     // accessible config class, this is the best place.
00181 
00187     void SetSolveUsingSnes(bool solveUsingSnes = true)
00188     {
00189         mSolveUsingSnes = solveUsingSnes;
00190     }
00191 
00195     bool GetSolveUsingSnes()
00196     {
00197         return mSolveUsingSnes;
00198     }
00199 };
00200 
00201 
00202 
00203 
00204 #endif /* SOLIDMECHANICSPROBLEMDEFINITION_HPP_ */