Nektar++
EquationOfState.cpp
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2 //
3 // File: EquationOfState.cpp
4 //
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9 // Copyright (c) 2006 Division of Applied Mathematics, Brown University (USA),
10 // Department of Aeronautics, Imperial College London (UK), and Scientific
11 // Computing and Imaging Institute, University of Utah (USA).
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30 //
31 // Description: Abstract base class for equations of state.
32 //
33 ///////////////////////////////////////////////////////////////////////////////
34 
35 #include "EquationOfState.h"
36 
37 using namespace std;
38 
39 namespace Nektar
40 {
42 {
43  static EquationOfStateFactory instance;
44  return instance;
45 }
46 
47 EquationOfState::EquationOfState(
49 {
50  pSession->LoadParameter("Gamma", m_gamma, 1.4);
51  pSession->LoadParameter("GasConstant", m_gasConstant, 287.058);
52 
53  m_gammaMone = m_gamma - 1.0;
54  m_gammaMoneOgasConst = m_gammaMone / m_gasConstant;
55 }
56 
57 EquationOfState::EquationOfState(const NekDouble &gamma,
58  const NekDouble &gasConstant)
59  : m_gamma{gamma}, m_gasConstant{gasConstant}
60 {
61 }
62 
64  const NekDouble &e)
65 {
66  return v_GetTemperature(rho, e);
67 }
68 
70 {
71  return v_GetTemperature(rho, e);
72 }
73 
75 {
76  return v_GetPressure(rho, e);
77 }
78 
80 {
81  return v_GetPressure(rho, e);
82 }
83 
85  const NekDouble &e)
86 {
87  return v_GetSoundSpeed(rho, e);
88 }
89 
91 {
92  return v_GetEntropy(rho, e);
93 }
94 
96 {
97  return v_GetDPDrho_e(rho, e);
98 }
99 
101 {
102  return v_GetDPDe_rho(rho, e);
103 }
104 
106  const NekDouble &p)
107 {
108  return v_GetEFromRhoP(rho, p);
109 }
110 
112 {
113  return v_GetRhoFromPT(p, T);
114 }
115 
116 // General implementation for v_GetSoundSpeed: c^2 = xi + kappa * h
117 // where xi = dpdrho - e/rho * dp/de and kappa = dp/de / rho
119  const NekDouble &e)
120 {
121  NekDouble p = GetPressure(rho, e);
122  NekDouble dpde = GetDPDe_rho(rho, e);
123  NekDouble dpdrho = GetDPDrho_e(rho, e);
124 
125  NekDouble enthalpy = e + p / rho;
126 
127  NekDouble chi = dpdrho - e / rho * dpde;
128  NekDouble kappa = dpde / rho;
129 
130  return sqrt(chi + kappa * enthalpy);
131 }
132 
133 } // namespace Nektar
NekDouble GetEntropy(const NekDouble &rho, const NekDouble &e)
Calculate the entropy.
virtual NekDouble v_GetSoundSpeed(const NekDouble &rho, const NekDouble &e)
NekDouble GetPressure(const NekDouble &rho, const NekDouble &e)
Calculate the pressure.
virtual NekDouble v_GetEFromRhoP(const NekDouble &rho, const NekDouble &p)=0
virtual NekDouble v_GetDPDe_rho(const NekDouble &rho, const NekDouble &e)=0
NekDouble GetRhoFromPT(const NekDouble &p, const NekDouble &T)
Obtain the density from P and T.
virtual NekDouble v_GetDPDrho_e(const NekDouble &rho, const NekDouble &e)=0
NekDouble GetDPDrho_e(const NekDouble &rho, const NekDouble &e)
Calculate the partial derivative of P(rho,e) with respect to rho.
NekDouble GetSoundSpeed(const NekDouble &rho, const NekDouble &e)
Calculate the sound speed.
NekDouble GetTemperature(const NekDouble &rho, const NekDouble &e)
Calculate the temperature.
virtual NekDouble v_GetRhoFromPT(const NekDouble &rho, const NekDouble &p)=0
NekDouble GetDPDe_rho(const NekDouble &rho, const NekDouble &e)
Calculate the partial derivative of P(rho,e) with respect to e.
NekDouble GetEFromRhoP(const NekDouble &rho, const NekDouble &p)
Obtain the internal energy from rho and P.
virtual NekDouble v_GetTemperature(const NekDouble &rho, const NekDouble &e)=0
virtual NekDouble v_GetEntropy(const NekDouble &rho, const NekDouble &e)=0
virtual NekDouble v_GetPressure(const NekDouble &rho, const NekDouble &e)=0
Provides a generic Factory class.
Definition: NekFactory.hpp:105
std::shared_ptr< SessionReader > SessionReaderSharedPtr
The above copyright notice and this permission notice shall be included.
Definition: CoupledSolver.h:2
EquationOfStateFactory & GetEquationOfStateFactory()
Declaration of the equation of state factory singleton.
tinysimd::simd< NekDouble > vec_t
double NekDouble
scalarT< T > sqrt(scalarT< T > in)
Definition: scalar.hpp:294