openfoam/tutorials/lagrangian/porousExplicitSourceReactingParcelFoam/parcelInBox
Henry 63da3e9afc Thermodynamics: Rationalization
At the specie level:
    hs = sensible enthalpy
    ha = absolute (what was total) enthalpy
    es = sensibly internal energy
    ea = absolute (what was total) internal energy

At top-level
    Rename total enthalpy h -> ha
    Rename sensible enthalpy hs -> h

Combined h, hs, e and es thermo packages into a single structure.

Thermo packages now provide "he" function which may return either enthalpy or
internal energy, sensible or absolute according to the run-time selected form

alphaEff now returns the effective diffusivity for the particular energy which
the thermodynamics package is selected to solve for.
2012-05-30 15:19:38 +01:00
..
0 Copyright transfered to the OpenFOAM Foundation 2011-08-14 12:17:30 +01:00
constant Thermodynamics: Rationalization 2012-05-30 15:19:38 +01:00
system Thermodynamics: Rationalization 2012-05-30 15:19:38 +01:00
README Added another new tutorial case for porousExplicitSourceReactingParcelFoam 2009-12-10 16:40:18 +00:00

Single water droplet

One-way coupling with the Eulerian phase

Droplet should approach the wet-bulb temperature