SolidMechanicsProblemDefinition.hpp

00001 /*
00002 
00003 Copyright (c) 2005-2015, University of Oxford.
00004 All rights reserved.
00005 
00006 University of Oxford means the Chancellor, Masters and Scholars of the
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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 #include "QuadraticMesh.hpp"
00042 
00049 template<unsigned DIM>
00050 class SolidMechanicsProblemDefinition : public ContinuumMechanicsProblemDefinition<DIM>
00051 {
00052 private:
00054     // material law
00056 
00061     std::vector<AbstractIncompressibleMaterialLaw<DIM>*> mIncompressibleMaterialLaws;
00067     std::vector<AbstractCompressibleMaterialLaw<DIM>*> mCompressibleMaterialLaws;
00068 
00070     bool mIsHomogeneousMaterial;
00071 
00073     CompressibilityType mCompressibilityType;
00074 
00076     bool mSolveUsingSnes;
00077 
00085     void CheckCastSuccess(CompressibilityType compressibilityType,AbstractMaterialLaw<DIM>* pMaterialLaw);
00086 
00087 public:
00092     SolidMechanicsProblemDefinition(AbstractTetrahedralMesh<DIM,DIM>& rMesh);
00093 
00095     virtual ~SolidMechanicsProblemDefinition()
00096     {
00097     }
00098 
00099 
00108     void SetMaterialLaw(CompressibilityType compressibilityType, AbstractMaterialLaw<DIM>* pMaterialLaw);
00109 
00119     void SetMaterialLaw(CompressibilityType compressibilityType, std::vector<AbstractMaterialLaw<DIM>*>& rMaterialLaws);
00120 
00125     bool IsHomogeneousMaterial();
00126 
00127 
00133     CompressibilityType GetCompressibilityType();
00134 
00141     AbstractIncompressibleMaterialLaw<DIM>* GetIncompressibleMaterialLaw(unsigned elementIndex);
00142 
00149     AbstractCompressibleMaterialLaw<DIM>* GetCompressibleMaterialLaw(unsigned elementIndex);
00150 
00155     void SetZeroDisplacementNodes(std::vector<unsigned>& rFixedNodes)
00156     {
00157         this->SetZeroDirichletNodes(rFixedNodes);
00158     }
00159 
00167     void SetFixedNodes(std::vector<unsigned>& rFixedNodes, std::vector<c_vector<double,DIM> >& rFixedNodeLocation);
00168 
00173     virtual void Validate();
00174 
00176     // The following methods set parameters used by the solver class
00177     // (AbstractNonlinearElasticitySolver). It is not ideal that they are
00178     // stored in this class - it would be nicer if this class was just about
00179     // the problem, not how it is solver - but in the absence of a globally
00180     // accessible config class, this is the best place.
00182 
00188     void SetSolveUsingSnes(bool solveUsingSnes = true)
00189     {
00190         mSolveUsingSnes = solveUsingSnes;
00191     }
00192 
00196     bool GetSolveUsingSnes()
00197     {
00198         return mSolveUsingSnes;
00199     }
00200 };
00201 
00202 
00203 
00204 
00205 #endif /* SOLIDMECHANICSPROBLEMDEFINITION_HPP_ */

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