CrossPowerLaw.H
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23 
24 Class
25  Foam::laminarModels::generalisedNewtonianViscosityModels::CrossPowerLaw
26 
27 Description
28  Cross-Power law generalised Newtonian viscosity model
29 
30  The strain rate coefficient can be specified either as the constant \c m or
31  the critical stress level at the transition to shear thinning \c
32  tauStar if \c tauStar is provided:
33 
34  Kinematic viscosity [m^2/s]
35 
36  \f[
37  \nu = \nu_\infty + \frac{(\nu_0 - \nu_\infty)}{1 + (m\gamma)^n}
38  \f]
39 
40  or
41 
42  \f[
43  \nu = \nu_\infty
44  + \frac{(\nu_0 - \nu_\infty)}
45  {1 + \left(\frac{\nu_0\gamma}{\tau^*}\right)^n}
46  \f]
47 
48  Example specification:
49  \verbatim
50  viscosityModel CrossPowerLaw;
51 
52  nuInf 10;
53  m 0.4;
54  n 3;
55  \endverbatim
56 
57 SourceFiles
58  CrossPowerLaw.C
59 
60 \*---------------------------------------------------------------------------*/
61 
62 #ifndef CrossPowerLaw_H
63 #define CrossPowerLaw_H
64 
66 #include "dimensionedScalar.H"
67 
68 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
69 
70 namespace Foam
71 {
72 namespace laminarModels
73 {
74 namespace generalisedNewtonianViscosityModels
75 {
76 
77 /*---------------------------------------------------------------------------*\
78  Class CrossPowerLaw Declaration
79 \*---------------------------------------------------------------------------*/
80 
81 class CrossPowerLaw
82 :
84 {
85  // Private Data
86 
87  dimensionedScalar nuInf_;
89  dimensionedScalar tauStar_;
91 
92 
93 public:
94 
95  //- Runtime type information
96  TypeName("CrossPowerLaw");
97 
98 
99  // Constructors
100 
101  //- Construct from components
103 
104 
105  //- Destructor
106  virtual ~CrossPowerLaw()
107  {}
108 
109 
110  // Member Functions
111 
112  //- Read transportProperties dictionary
113  virtual bool read(const dictionary& viscosityProperties);
114 
115  //- Return the laminar viscosity
116  virtual tmp<volScalarField> nu
117  (
118  const volScalarField& nu0,
119  const volScalarField& strainRate
120  ) const;
121 };
122 
123 
124 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
125 
126 } // End namespace generalisedNewtonianViscosityModels
127 } // End namespace laminarModels
128 } // End namespace Foam
129 
130 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
131 
132 #endif
133 
134 // ************************************************************************* //
CrossPowerLaw(const dictionary &viscosityProperties)
Construct from components.
Definition: CrossPowerLaw.C:55
A list of keyword definitions, which are a keyword followed by any number of values (e...
Definition: dictionary.H:156
virtual tmp< volScalarField > nu(const volScalarField &nu0, const volScalarField &strainRate) const
Return the laminar viscosity.
const dictionary & viscosityProperties() const
Return the phase transport properties dictionary.
An abstract base class for generalised Newtonian viscosity models.
Cross-Power law generalised Newtonian viscosity model.
Definition: CrossPowerLaw.H:80
A class for managing temporary objects.
Definition: PtrList.H:53
Namespace for OpenFOAM.
virtual bool read(const dictionary &viscosityProperties)
Read transportProperties dictionary.
Definition: CrossPowerLaw.C:73