liquidI.H
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25 
26 inline Foam::scalar Foam::liquid::rho(scalar p, scalar T) const
27 {
28  return rho_->value(T);
29 }
30 
31 
32 inline Foam::scalar Foam::liquid::alphav(scalar p, scalar T) const
33 {
35  return NaN;
36 }
37 
38 
39 inline Foam::scalar Foam::liquid::pv(scalar p, scalar T) const
40 {
41  return pv_->value(T);
42 }
43 
44 
45 inline Foam::scalar Foam::liquid::hl(scalar p, scalar T) const
46 {
47  return hl_->value(T);
48 }
49 
50 
51 inline Foam::scalar Foam::liquid::Cp(scalar p, scalar T) const
52 {
53  return Cp_->value(T);
54 }
55 
56 
57 inline Foam::scalar Foam::liquid::hs(scalar p, scalar T) const
58 {
59  return ha(p, T) - hf();
60 }
61 
62 
63 inline Foam::scalar Foam::liquid::hf() const
64 {
65  return hf_;
66 }
67 
68 
69 inline Foam::scalar Foam::liquid::ha(scalar p, scalar T) const
70 {
71  return h_->value(T);
72 }
73 
74 
75 inline Foam::scalar Foam::liquid::Cpg(scalar p, scalar T) const
76 {
77  return Cpg_->value(T);
78 }
79 
80 
81 inline Foam::scalar Foam::liquid::B(scalar p, scalar T) const
82 {
83  return B_->value(T);
84 }
85 
86 
87 inline Foam::scalar Foam::liquid::mu(scalar p, scalar T) const
88 {
89  return mu_->value(T);
90 }
91 
92 
93 inline Foam::scalar Foam::liquid::mug(scalar p, scalar T) const
94 {
95  return mug_->value(T);
96 }
97 
98 
99 inline Foam::scalar Foam::liquid::kappa(scalar p, scalar T) const
100 {
101  return kappa_->value(T);
102 }
103 
104 
105 inline Foam::scalar Foam::liquid::kappag(scalar p, scalar T) const
106 {
107  return kappag_->value(T);
108 }
109 
110 
111 inline Foam::scalar Foam::liquid::sigma(scalar p, scalar T) const
112 {
113  return sigma_->value(T);
114 }
115 
116 
117 inline Foam::scalar Foam::liquid::D(scalar p, scalar T) const
118 {
119  return D_->value(T);
120 }
121 
122 
123 inline Foam::scalar Foam::liquid::D(scalar p, scalar T, scalar Wb) const
124 {
125  // Currently ignoring the Wb argument
126  return D_->value(T);
127 }
128 
129 
130 // ************************************************************************* //
scalar ha(const scalar p, const scalar T) const
Definition: EtoHthermo.H:20
scalar B(scalar p, scalar T) const
Second Virial Coefficient [m^3/kg].
Definition: liquidI.H:81
scalar alphav(scalar p, scalar T) const
Volumetric coefficient of thermal expansion [1/T].
Definition: liquidI.H:32
scalar D(scalar p, scalar T) const
Vapour diffusivity [m^2/s].
Definition: liquidI.H:117
scalar mu(scalar p, scalar T) const
Liquid viscosity [Pa s].
Definition: liquidI.H:87
scalar Cpg(scalar p, scalar T) const
Ideal gas heat capacity [J/kg/K].
Definition: liquidI.H:75
scalar rho(scalar p, scalar T) const
Liquid density [kg/m^3].
Definition: liquidI.H:26
scalar sigma(scalar p, scalar T) const
Surface tension [N/m].
Definition: liquidI.H:111
scalar kappa(scalar p, scalar T) const
Liquid thermal conductivity [W/m/K].
Definition: liquidI.H:99
scalar Cp(scalar p, scalar T) const
Liquid heat capacity [J/kg/K].
Definition: liquidI.H:51
scalar hf() const
Liquid heat of formation [J/kg].
Definition: liquidI.H:63
scalar hs(scalar p, scalar T) const
Liquid sensible enthalpy [J/kg].
Definition: liquidI.H:57
scalar mug(scalar p, scalar T) const
Vapour viscosity [Pa s].
Definition: liquidI.H:93
scalar pv(scalar p, scalar T) const
Vapour pressure [Pa].
Definition: liquidI.H:39
scalar ha(scalar p, scalar T) const
Liquid absolute enthalpy [J/kg].
Definition: liquidI.H:69
scalar hl(scalar p, scalar T) const
Heat of vapourisation [J/kg].
Definition: liquidI.H:45
scalar kappag(scalar p, scalar T) const
Vapour thermal conductivity [W/m/K].
Definition: liquidI.H:105
#define NotImplemented
Issue a FatalErrorIn for a function not currently implemented.
Definition: error.H:381
void T(GeometricField< Type, GeoMesh, PrimitiveField1 > &gf, const GeometricField< Type, GeoMesh, PrimitiveField2 > &gf1)
volScalarField & p