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On a modified Monte-Carlo method and variable soft sphere model for rarefied binary gas mixture flow simulation
Authors:S.S. Nourazar  P. Jahangiri  A. Aboutalebi  A.A. Ganjaei  M. Nourazar  J. Khadem
Affiliation:1. Department of Mechanical Engineering , Amirkabir University of Technology , Tehran, Iran icp@aut.ac.ir;3. Department of Mechanical Engineering , Amirkabir University of Technology , Tehran, Iran;4. Department of Mechanical Engineering , Birjand University , Birjand, Iran;5. Department of Physics , Islamic Azad University , Tehran, Iran
Abstract:The effect of new terms in the improved algorithm, the modified direct simulation Monte-Carlo (MDSMC) method, is investigated by simulating a rarefied binary gas mixture flow inside a rotating cylinder. Dalton law for the partial pressures contributed by each species of the binary gas mixture is incorporated into our simulation using the MDSMC method and the direct simulation Monte-Carlo (DSMC) method. Moreover, the effect of the exponent of the cosine of deflection angle (α) in the inter-molecular collision models, the variable soft sphere (VSS) and the variable hard sphere (VHS), is investigated in our simulation. The improvement of the results of simulation is pronounced using the MDSMC method when compared with the results of the DSMC method. The results of simulation using the VSS model show some improvements on the result of simulation for the mixture temperature at radial distances close to the cylinder wall where the temperature reaches the maximum value when compared with the results using the VHS model.
Keywords:binary gas mixture  DSMC method  MDSMC method  variable soft sphere (VSS) model  second order collision
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