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Direct Simulation of a 1-D Shock with State-to-State Rotational Energy Exchange
36th AIAA Aerospace Sciences Meeting and Exhibit
  • Aaron Altman, University of Dayton
  • Philip Varghese, University of Texas at Austin
Document Type
Conference Paper
Publication Date
1-1-1998
Abstract
One-dimensional Mach 3.5 and Mach 5 shock are modeled in para-hydrogen (p-H2) using a Direct Simulation Monte Carlo (DSMC) method with quantum state-to-state collision cross-sections. Non-Boltzmann rotational population fractions were observed within the shock. The results are compared to a DSMC code using a Borgnakke-Larsen (B-L) energy exchange model. Both constant and temperature variable rotational collision numbers were used in an attempt to match the behavior shown by the quantum state-resolved calculations. A modified B-L model with temperature dependent collision number was also tested empirically to see if a better match could be obtained with the state-resolved calculations.
Comments

Permission documentation is on file.

Publisher
American Institute of Aeronautics and Astronautics
Place of Publication
Reno, NV
Citation Information
Aaron Altman and Philip Varghese. "Direct Simulation of a 1-D Shock with State-to-State Rotational Energy Exchange" 36th AIAA Aerospace Sciences Meeting and Exhibit (1998)
Available at: http://works.bepress.com/aaron-altman/26/