Effects of Magnetohydrodynamic Interaction-Zone Position on Shock-Wave/Boundary-Layer Interaction


Autoria(s): Su WY; 张新宇; Zhang KY
Data(s)

2010

Resumo

A third-order weighted essentially nonoscillatory and non-free-parameter difference scheme magnetohydrodynamic solver has been established to investigate the mechanisms of magnetohydrodynamics controlling separation induced by an oblique shock wave impinging on a flat plate. The effects of magnetohydrodynamic interaction-zone location on the separation point, reattachment point, separation-bubble size, and boundary-layer velocity profiles are analyzed. The results show that there exists a best location for the magnetohydrodynamic zone to be applied, where the separation point is delayed the farthest, and the separation bubble is decreased up to about 50% in size compared to the case without magnetohydrodynamic control, which demonstrated the promising of magnetohydrodynamics suppressing the separation induced by shock-wave/boundary-layer interactions.

National Natural Science Foundation of China [90305022, 10525212]

Identificador

http://dspace.imech.ac.cn/handle/311007/43555

http://www.irgrid.ac.cn/handle/1471x/124564

Idioma(s)

英语

Fonte

JOURNAL OF PROPULSION AND POWER.2010,26(5):1053-1058

Tipo

期刊论文