fluidThermoMomentumTransportModels.C
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25 
27 
28 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
29 
31 (
32  geometricOneField,
34  compressibleMomentumTransportModel,
35  CompressibleMomentumTransportModel,
36  fluidThermo
37 );
38 
39 
40 // -------------------------------------------------------------------------- //
41 // Laminar models
42 // -------------------------------------------------------------------------- //
43 
44 #include "Stokes.H"
46 
47 #include "generalizedNewtonian.H"
48 makeLaminarModel(generalizedNewtonian);
49 
50 #include "Maxwell.H"
52 
53 #include "Giesekus.H"
54 makeLaminarModel(Giesekus);
55 
56 #include "PTT.H"
58 
59 
60 // -------------------------------------------------------------------------- //
61 // RAS models
62 // -------------------------------------------------------------------------- //
63 
64 #include "SpalartAllmaras.H"
66 
67 #include "kEpsilon.H"
68 makeRASModel(kEpsilon);
69 
70 #include "RNGkEpsilon.H"
72 
73 #include "realizableKE.H"
75 
76 #include "buoyantKEpsilon.H"
77 makeRASModel(buoyantKEpsilon);
78 
79 #include "LaunderSharmaKE.H"
81 
82 #include "kOmega.H"
83 makeRASModel(kOmega);
84 
85 #include "kOmegaSST.H"
86 makeRASModel(kOmegaSST);
87 
88 #include "kOmegaSSTSAS.H"
90 
91 #include "kOmegaSSTLM.H"
92 makeRASModel(kOmegaSSTLM);
93 
94 #include "v2f.H"
96 
97 #include "LRR.H"
99 
100 #include "SSG.H"
102 
103 
104 // -------------------------------------------------------------------------- //
105 // LES models
106 // -------------------------------------------------------------------------- //
107 
108 #include "Smagorinsky.H"
109 makeLESModel(Smagorinsky);
110 
111 #include "WALE.H"
113 
114 #include "kEqn.H"
116 
117 #include "dynamicKEqn.H"
118 makeLESModel(dynamicKEqn);
119 
120 #include "dynamicLagrangian.H"
121 makeLESModel(dynamicLagrangian);
122 
123 #include "kOmegaSSTDES.H"
124 makeLESModel(kOmegaSSTDES);
125 
126 #include "SpalartAllmarasDES.H"
128 
129 #include "SpalartAllmarasDDES.H"
130 makeLESModel(SpalartAllmarasDDES);
131 
132 #include "SpalartAllmarasIDDES.H"
134 
135 #include "DeardorffDiffStress.H"
137 
138 
139 // ************************************************************************* //
#define makeLaminarModel(Type)
Differential SGS Stress Equation Model for incompressible and compressible flows. ...
Generalised Maxwell model for viscoelasticity using the upper-convected time derivative of the stress...
Definition: Maxwell.H:76
SpalartAllmarasDES DES turbulence model for incompressible and compressible flows.
Speziale, Sarkar and Gatski Reynolds-stress turbulence model for incompressible and compressible flow...
Definition: SSG.H:92
One equation eddy-viscosity model.
Definition: kEqn.H:71
SpalartAllmaras IDDES turbulence model for incompressible and compressible flows. ...
GeometricField< scalar, fvPatchField, volMesh > volScalarField
Definition: volFieldsFwd.H:57
Realizable k-epsilon turbulence model for incompressible and compressible flows.
Definition: realizableKE.H:77
#define makeLESModel(Type)
makeRASModel(kEpsilonLopesdaCosta)
Renormalization group k-epsilon turbulence model for incompressible and compressible flows...
Definition: RNGkEpsilon.H:82
Spalart-Allmaras one-eqn mixing-length model for incompressible and compressible external flows...
Lien and Kalitzin&#39;s v2-f turbulence model for incompressible and compressible flows, with a limit imposed on the turbulent viscosity given by Davidson et al.
Definition: v2f.H:117
The Wall-adapting local eddy-viscosity (WALE) SGS model.
Definition: WALE.H:73
Turbulence model for Stokes flow.
Definition: Stokes.H:52
makeBaseMomentumTransportModel(geometricOneField, geometricOneField, incompressibleMomentumTransportModel, IncompressibleMomentumTransportModel, transportModel)
Launder and Sharma low-Reynolds k-epsilon turbulence model for incompressible and compressible and co...
Scale-adaptive URAS model based on the k-omega-SST RAS model.
Definition: kOmegaSSTSAS.H:95