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hEqn.H
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1
if
(
constProp
!=
"temperature"
)
2
{
3
volScalarField
&
h
=
thermo
.he();
4
5
if
(
constProp
==
"volume"
)
6
{
7
h[0] =
u0
+
p
[0]/
rho
[0] +
integratedHeat
;
8
}
9
else
10
{
11
h[0] =
h0
+
integratedHeat
;
12
}
13
14
thermo
.correct();
15
}
rho
rho
Definition:
readInitialConditions.H:91
integratedHeat
scalar integratedHeat
Definition:
readInitialConditions.H:97
thermo
rhoReactionThermo & thermo
Definition:
createFields.H:28
Foam::volScalarField
GeometricField< scalar, fvPatchField, volMesh > volScalarField
Definition:
volFieldsFwd.H:57
u0
scalar u0
Definition:
readInitialConditions.H:93
h0
const scalar h0
Definition:
readInitialConditions.H:81
constProp
const word constProp(initialConditions.lookup("constantProperty"))
Foam::constant::universal::h
const dimensionedScalar & h
Planck constant.
p
volScalarField & p
Definition:
createFieldRefs.H:12
applications
solvers
combustion
chemFoam
hEqn.H
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