if(mesh.moving())
{
// Make the fluxes relative
phi -= fvc::meshPhi(U);
}
# include "CourantNo.H"
fvVectorMatrix UEqn
(
fvm::ddt(U)
+ fvm::div(phi, U)
- fvm::laplacian(nu, U)
);
solve(UEqn == -fvc::grad(p));
// --- PISO loop
volScalarField rUA = 1.0/UEqn.A();
while (piso.correct())
U = rUA*UEqn.H();
phi = (fvc::interpolate(U) & mesh.Sf());
adjustPhi(phi, U, p);
while (piso.correctNonOrthogonal())
fvScalarMatrix pEqn
fvm::laplacian(rUA, p)
== fvc::div(phi)
pEqn.setReference(pRefCell, pRefValue);
pEqn.solve();
if (piso.finalNonOrthogonalIter())
phi -= pEqn.flux();
# include "continuityErrs.H"
U -= rUA*fvc::grad(p);
U.correctBoundaryConditions();