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Understanding of pressure based solver for compressible flow (rhoSimpleFOAM); basics to coding

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In this tutorial you will learn:
1. Difference between simpleFoam and rhoSimpleFoam.
2. Two method : Pressure based solver and Density based solver.
3. Equations of the pressure based solvers.
4. Theory behind the energy equations used in rhoSimpleFoam.
5. Modification in simpleFoam for rhoSimpleFoam.
6. Algorithm of rhoSimpleFoam.
7. Assumptions, modifications and steps involved to code the rhoSimpleFOAM.
8. What is meant meant by the error 'redeclaration'.
9. createField of rhoSimpleFoam.
10. Learning about the thermophysical package in OpenFoam and how it works.
11. How to use doxygen of openfoam.
12. createPhi.H for compressible flow.
13. About the library error 'No Such File or Directory'.
14.How to switch between energy equation for enthalpy and Internal Energy.
References : 1. F. Moukalled , L. Mangani , M. Darwish, The Finite Volume Method in Computational Fluid Dynamics,An Advanced Introduction with OpenFOAM® and Matlab
1. Difference between simpleFoam and rhoSimpleFoam.
2. Two method : Pressure based solver and Density based solver.
3. Equations of the pressure based solvers.
4. Theory behind the energy equations used in rhoSimpleFoam.
5. Modification in simpleFoam for rhoSimpleFoam.
6. Algorithm of rhoSimpleFoam.
7. Assumptions, modifications and steps involved to code the rhoSimpleFOAM.
8. What is meant meant by the error 'redeclaration'.
9. createField of rhoSimpleFoam.
10. Learning about the thermophysical package in OpenFoam and how it works.
11. How to use doxygen of openfoam.
12. createPhi.H for compressible flow.
13. About the library error 'No Such File or Directory'.
14.How to switch between energy equation for enthalpy and Internal Energy.
References : 1. F. Moukalled , L. Mangani , M. Darwish, The Finite Volume Method in Computational Fluid Dynamics,An Advanced Introduction with OpenFOAM® and Matlab
Understanding of pressure based solver for compressible flow (rhoSimpleFOAM); basics to coding
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