GRINS-0.7.0
heat_transfer_base.h
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1 //-----------------------------------------------------------------------bl-
2 //--------------------------------------------------------------------------
3 //
4 // GRINS - General Reacting Incompressible Navier-Stokes
5 //
6 // Copyright (C) 2014-2016 Paul T. Bauman, Roy H. Stogner
7 // Copyright (C) 2010-2013 The PECOS Development Team
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23 //-----------------------------------------------------------------------el-
24 
25 
26 #ifndef GRINS_HEAT_TRANSFER_BASE_H
27 #define GRINS_HEAT_TRANSFER_BASE_H
28 
29 //GRINS
30 #include "grins/physics.h"
34 
35 namespace GRINS
36 {
37 
39  /*
40  This physics class implements the classical Heat Transfer (neglecting viscous dissipation)
41  */
42  template<class Conductivity>
43  class HeatTransferBase : public Physics
44  {
45  public:
46 
47  HeatTransferBase( const std::string& physics_name,
48  const std::string& core_physics_name,
49  const GetPot& input );
50 
52 
54 
57  virtual void init_variables( libMesh::FEMSystem* system );
58 
60  virtual void set_time_evolving_vars( libMesh::FEMSystem* system );
61 
62  // Context initialization
63  virtual void init_context( AssemblyContext& context );
64 
65  // Registers all parameters in this physics and in its property
66  // classes
67  virtual void register_parameter
68  ( const std::string & param_name,
70  const;
71 
72  protected:
73 
75 
76  unsigned int _dim;
77 
81 
83 
87  libMesh::Number _rho, _Cp;
88 
90  Conductivity _k;
91 
92  private:
94 
95  void register_variables();
96  };
97 
98 } //End namespace block
99 
100 #endif // GRINS_HEAT_TRANSFER_BASE_H
virtual void init_context(AssemblyContext &context)
Initialize context for added physics variables.
Physics abstract base class. Defines API for physics to be added to MultiphysicsSystem.
Definition: physics.h:107
libMesh::Number _rho
Material parameters, read from input.
Physics class for Heat Transfer.
GRINS namespace.
Conductivity _k
Conductivity.
virtual void init_variables(libMesh::FEMSystem *system)
Initialization Heat Transfer variables.
virtual void set_time_evolving_vars(libMesh::FEMSystem *system)
Sets velocity variables to be time-evolving.
PrimitiveTempFEVariables _temp_vars
VelocityFEVariables _flow_vars
unsigned int _dim
Physical dimension of problem.
virtual void register_parameter(const std::string &param_name, libMesh::ParameterMultiAccessor< libMesh::Number > &param_pointer) const
Each subclass will register its copy of an independent.
PressureFEVariable _press_var

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