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Receptivity to free-stream disturbance waves for hypersonic flow over a blunt cone 被引量:8

Receptivity to free-stream disturbance waves for hypersonic flow over a blunt cone
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摘要 A high-order shock-fitting finite difference scheme is studied and used to do direc-tion numerical simulation (DNS) of hypersonic unsteady flow over a blunt cone with fast acoustic waves in the free stream, and the receptivity problem in the blunt cone hypersonic boundary layers is studied. The results show that the acoustic waves are the strongest disturbance in the blunt cone hypersonic boundary layers. The wave modes of disturbance in the blunt cone boundary layers are first, second, and third modes which are generated and propagated downstream along the wall. The results also show that as the frequency decreases, the amplitudes of wave modes of disturbance increase, but there is a critical value. When frequency is over the critial value, the amplitudes decrease. Because of the discontinuity of curvature along the blunt cone body, the maximum amplitudes as a function of frequencies are not monotone. A high-order shock-fitting finite difference scheme is studied and used to do direction numerical simulation (DNS) of hypersonic unsteady flow over a blunt cone with fast acoustic waves in the free stream, and the receptivity problem in the blunt cone hypersonic boundary layers is studied. The results show that the acoustic waves are the strongest disturbance in the blunt cone hypersonic boundary layers. The wave modes of disturbance in the blunt cone boundary layers are first, second, and third modes which are generated and propagated downstream along the wall. The results also show that as the frequency decreases, the amplitudes of wave modes of disturbance increase, but there is a critical value. When frequency is over the critial value, the amplitudes decrease. Because of the discontinuity of curvature along the blunt cone body, the maximum amplitudes as a function of frequencies are not monotone.
出处 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2008年第11期1682-1690,共9页 中国科学:物理学、力学、天文学(英文版)
基金 the National Natural Science Foundation of China (Grant Nos. 10632050 and 10502052)
关键词 RECEPTIVITY shock-fitting compact UPWIND scheme DNS BLUNT CONE receptivity shock-fitting compact upwind scheme DNS blunt cone
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