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Density based turbo transonicSteadySRFFoam, sCO2 radial turbo?

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Old   October 28, 2015, 19:21
Lightbulb Density based turbo transonicSteadySRFFoam, sCO2 radial turbo?
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Janry
Join Date: Oct 2015
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Hi all,
Recently I've tried to use OpenFOAM 3.0EX Density based turbo solver to carry out the supercritical CO_2 radial turbine simulation. However, when I try to operate the simulation, I've got many questions related to that.
--> The second step of my simulation has a big temperature drop, from 833.15K massively to 8.2K;
--> I've no idea how to implementation the Janaf specific heat for CO_2 into the thermoPhisicalPropeties.

I've attached my setting files and boundry, system files at this threads.

Thanks for your help!!!
Janry
29/10/2015
The thermoproperties:
/*--------------------------------*- C++ -*----------------------------------*\
| ========= | |
| \\ / F ield | OpenFOAM Extend Project: Open Source CFD |
| \\ / O peration | Version: 1.6-ext |
| \\ / A nd | Web: www.extend-project.de |
| \\/ M anipulation | |
\*---------------------------------------------------------------------------*/
FoamFile
{
version 2.0;
format ascii;
class dictionary;
location "constant";
object thermophysicalProperties;
}
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //

// thermoType ePsiThermo<pureMixture<constTransport<specieThermo <eConstThermo<perfectGas>>>>>;
//
// mixture air 1 28.9 717.5 0 1.8e-05 0.7;

thermoType hPsiThermo<pureMixture<constTransport<specieThermo <hConstThermo<perfectGas>>>>>;

// name, nMoles, mol weight, CP, Hf, mu, Pr;
mixture air 1 44.0095 1242.564 0 3.8e-05 0.7;
// mixture air 1 28.9 1004.5 0 0 0.7;

// ************************************************** *********************** //


T.txt

U.txt

p.txt

controlDict.txt

fvSolution.txt
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Tags
density_based_turbo, radial turbine, transonicsteadysrffoam


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