Comparisons and applications of numerical simulation methods for predicting aerodynamic heating around complex configurations

Author:

Luo Jin-Ling,Kang Hong-Lin,Li Jian,Dai Wu-Ye

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Computational Mechanics

Reference11 articles.

1. Dinesh, K.P., Michael, J.W., Joseph, G.M., et al.: X-33 aerothermal design environment predictions: verification and validation. AIAA Paper 2000-2686 (2000)

2. Dean, A.K., Michael, J.W., Dinesh, K.P., et al.: X-33 aerothermal design environment predictions: review of acreage and local computations. AIAA Paper 2000-2687 (2000)

3. Charles, E.C., Aaron, H.A., Jeffrey, A.W., et al.: Aeroheating predictions for the X-43 cowl-closed configuration at Mach 7 and 10. AIAA Paper 2002-0218 (2002)

4. Zhang, H.J., Ma, H.Y., Tong, B.G.: Turbulence modeling validation in hypersonic complex flows. Acta Aerodynamica Sinica 19(2), 201–216 (2001)

5. Li, J.Z.: Research on scheme effect and grid effect of computational fluid dynamics in aerothermal. [Master Thesis]. Beihang University, Beijing (2004)

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1. CFD Simulation Strategy for Hypersonic Aerodynamic Heating around a Blunt Biconic;International Journal of Aerospace Engineering;2021-04-15

2. A Multiscale Method for Optical Responses of Nanostructures;SIAM Journal on Applied Mathematics;2013-01

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