Kutadeladze.C
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27
28#include "Kutadeladze.H"
31#include "phasePairKey.H"
32#include "phaseSystem.H"
33
34// * * * * * * * * * * * * * * Static Data Members * * * * * * * * * * * * * //
35
36namespace Foam
37{
38namespace wallBoilingModels
39{
40namespace nucleateFluxModels
41{
44 (
48 );
49}
50}
51}
52
53// * * * * * * * * * * * * * * * * Constructors * * * * * * * * * * * * * * //
54
56(
57 const dictionary& dict
58)
59:
61 Cn_(dict.getOrDefault<scalar>("Cn", 5.66e-10)),
62 an_(dict.getOrDefault<scalar>("an", 2.5)),
63 bn_(dict.getOrDefault<scalar>("bn", 1)),
64 n_(dict.getOrDefault<scalar>("n", 1))
65{}
66
67
68// * * * * * * * * * * * * * * * Member Functions * * * * * * * * * * * * * //
69
72(
73 const phaseModel& liquid,
74 const phaseModel& vapor,
75 const label patchi,
76 const scalarField& Tl,
77 const scalarField& Tsatw,
78 const scalarField& L
79) const
80{
81 const auto& p = liquid.mesh().lookupObject<volScalarField>("p");
82 const scalarField& pb = p.boundaryField()[patchi];
83
84 const labelUList& cells = liquid.mesh().boundary()[patchi].faceCells();
85
86 tmp<scalarField> trhoVapor = vapor.thermo().rhoEoS(pb, Tsatw, cells);
87 const scalarField& rhoVapor = trhoVapor.ref();
88
89 tmp<scalarField> trhoLiq = liquid.thermo().rhoEoS(pb, Tsatw, cells);
90 const scalarField& rhoLiq = trhoLiq.ref();
91
92 const phasePairKey pair(liquid.name(), vapor.name());
93 const scalarField sigma
94 (
95 liquid.fluid().sigma(pair)().boundaryField()[patchi]
96 );
97
98 const fvPatchScalarField& Tw =
99 liquid.thermo().T().boundaryField()[patchi];
100
101 const scalarField kappaLiquid(liquid.kappa(patchi));
102
103 tmp<scalarField> tCpliq = liquid.thermo().Cp(pb, Tsatw, cells);
104 const scalarField& Cpliquid = tCpliq();
105
106 const scalarField muLiquid(liquid.mu(patchi));
107
108 const scalarField deltaTsub
109 (
110 pow(max((Tw-Tsatw), scalar(0)), an_)
111 );
112
113 return
114 Cn_*kappaLiquid*pow(Cpliquid, 1.5)*pow(rhoLiq,1.28)*pow(pb,1.75)
115 *deltaTsub
116 /
117 (pow(muLiquid, 0.625)*pow(sigma,0.9)*pow(L,1.5)*pow(rhoVapor,1.5));
118}
119
120
122(
123 Ostream& os
124) const
125{
127 os.writeEntry("Cn", Cn_);
128 os.writeEntry("an", an_);
129 os.writeEntry("bn", bn_);
130 os.writeEntry("n", n_);
131}
132
133
134// ************************************************************************* //
Macros for easy insertion into run-time selection tables.
#define addToRunTimeSelectionTable(baseType, thisType, argNames)
Add to construction table with typeName as the key.
An Ostream is an abstract base class for all output systems (streams, files, token lists,...
Definition: Ostream.H:62
virtual tmp< scalarField > rhoEoS(const scalarField &p, const scalarField &T, const labelList &cells) const =0
Density from pressure and temperature from EoS.
A list of keyword definitions, which are a keyword followed by a number of values (eg,...
Definition: dictionary.H:126
virtual bool write()
Write the output fields.
Generic thermophysical properties class for a liquid in which the functions and coefficients for each...
Definition: liquid.H:57
scalar mu(scalar p, scalar T) const
Liquid viscosity [Pa s].
Definition: liquidI.H:70
scalar sigma(scalar p, scalar T) const
Surface tension [N/m].
Definition: liquidI.H:94
scalar kappa(scalar p, scalar T) const
Liquid thermal conductivity [W/(m K)].
Definition: liquidI.H:82
scalar Cp(scalar p, scalar T) const
Liquid heat capacity [J/(kg K)].
Definition: liquidI.H:46
Single incompressible phase derived from the phase-fraction. Used as part of the multiPhaseMixture fo...
Definition: phaseModel.H:61
const word & name() const
Definition: phaseModel.H:144
virtual const rhoThermo & thermo() const =0
Return the thermophysical model.
An ordered or unorder pair of phase names. Typically specified as follows.
Definition: phasePairKey.H:68
A class for managing temporary objects.
Definition: tmp.H:65
T & ref() const
Definition: tmpI.H:227
Base class for nucleation flux models.
Nucleate flux sub-cooling correlation.
Definition: Kutadeladze.H:126
virtual tmp< scalarField > qNucleate(const phaseModel &liquid, const phaseModel &vapor, const label patchi, const scalarField &Tl, const scalarField &Tsatw, const scalarField &L) const
Calculate and return the nucleation-site density.
Definition: Kutadeladze.C:72
#define defineTypeNameAndDebug(Type, DebugSwitch)
Define the typeName and debug information.
Definition: className.H:121
volScalarField & p
OBJstream os(runTime.globalPath()/outputName)
const cellShapeList & cells
Namespace for OpenFOAM.
label max(const labelHashSet &set, label maxValue=labelMin)
Find the max value in labelHashSet, optionally limited by second argument.
Definition: hashSets.C:47
dimensionedScalar pow(const dimensionedScalar &ds, const dimensionedScalar &expt)
dictionary dict
const vector L(dict.get< vector >("L"))