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EEqn.H
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1{
3 (
4 fvm::ddt(rho, e) + fvm::div(phi, e)
5 + fvc::ddt(rho, K) + fvc::div(phi, K)
6 + fvc::div(fvc::absolute(phi/fvc::interpolate(rho), U), p, "div(phiv,p)")
7 - fvm::laplacian(turbulence->alphaEff(), e)
8 ==
10 );
11
12 if (MRF.active())
13 {
14 EEqn += fvc::div(MRF.phi(), p);
15 }
16
17 EEqn.relax();
18
19 fvOptions.constrain(EEqn);
20
21 EEqn.solve();
22
23 fvOptions.correct(e);
24
25 thermo.correct();
26}
CGAL::Exact_predicates_exact_constructions_kernel K
fvScalarMatrix EEqn(fvm::ddt(rho, he)+mvConvection->fvmDiv(phi, he)+fvc::ddt(rho, K)+fvc::div(phi, K)+(he.name()=="e" ? fvc::div(fvc::absolute(phi/fvc::interpolate(rho), U), p, "div(phiv,p)") :-dpdt) - fvm::laplacian(turbulence->alphaEff(), he)==Qdot+radiation->Sh(thermo, he)+parcels.Sh(he)+surfaceFilm.Sh()+fvOptions(rho, he))
fv::options & fvOptions
IOMRFZoneList & MRF
Basic thermodynamics type based on the use of fitting functions for cp, h, s obtained from the templa...
U
Definition pEqn.H:72
volScalarField & p
fvScalarMatrix EEqn(fvm::ddt(rho, he)+mvConvection->fvmDiv(phi, he)+fvc::ddt(rho, K)+fvc::div(phi, K)+(he.name()=="e" ? fvc::div(fvc::absolute(phi/fvc::interpolate(rho), U), p, "div(phiv,p)") :-dpdt) - fvm::laplacian(turbulence->alphaEff(), he)==Qdot+fvOptions(rho, he))
compressible::turbulenceModel & turbulence
fvMatrix< scalar > fvScalarMatrix
volScalarField & e