Entropy consistent formulation and numerical simulation of the BGK-Burnett equations Using a kinetic wave/particle flux splitting algorithm

Author:

Balakrishnan Ramesh,Agarwal Ramesh K.

Publisher

Springer Berlin Heidelberg

Reference8 articles.

1. Fiscko, K. A. and Chapman, D. R., “Comparison of Burnett, Super-Burnett and Monte Carlo Solutions for Hypersonic Shock Structure,” Proceedings of the 16th International Symposium on Rarefied Gas Dynamics, Pasadena, California, July 11–15, 1988.

2. Zhong, X., “Development and Computation of Continuum Higher Order Constitutive Relations for High-Altitude Hypersonic Flow,” Ph.D. Thesis, Stanford University, 1991.

3. Welder, W. T., Chapman, D. R., and MacCormack, R. W., “Evaluation of Various Forms of the Burnett Equations,” AIAA-93-3094, AIAA 24th Fluid Dynamics Conference, Orlando, FL, July 6–9, 1993.

4. Comeaux, K. A., Chapman, D. R., and MacCormack, R. W., “An Analysis of the Burnett Equations Based on the Second Law of Thermodynamics,” AIAA 95-0415, Reno, NV, 33rd Aerospace Sciences Meeting, January 9–12, 1995.

5. Balakrishnan R. and Agarwal, R. K., “Formulation of a Second Order Distribution Function by Perturbation Analysis of the Boltzmann Equation,” report (unpublished), Department of Aerospace Engineering, Wichita State University, 1995.

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1. Bivelocity gas dynamics of micro-channel couette flow;International Journal of Engineering Science;2014-06

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