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Numerical investigation on the forced oscillation of shock train in hypersonic inlet with translating cowl

机译:平移整流罩在高超声速进气道中冲击波强迫振荡的数值研究

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To investigate the forced oscillations of shock train caused by sinusoidal backpressure perturbations with different amplitudes and frequencies in a hypersonic inlet equipped with translating cowl, numerical simulations have been conducted with the application of dynamic mesh method. The results reveal that under sinusoidal backpressure perturbations, the shock train oscillates and propagates upstream as the cowl moves downstream rather than crosses the shock-impact points abruptly with significant migration distance, compared to the result obtained under constant backpressure. Meanwhile, the amplitude of forced oscillation increases when the shock train leading edge oscillates around the adjacent shock-impact points. The larger amplitude of backpressure perturbation not only aggravates the forced oscillations but also increases the number of shock-impact points that the shock train crosses in one cycle, which leads to complicated changes in the shock train structures, even involving the separation mode transition. The frequency of forced oscillation equals to the one of backpressure perturbation invariably, but with certain phase lags due to the interference of background waves. Although the variable background waves do have the ability to affect the amplitude of forced oscillation, they are incapable of changing the frequency of forced oscillation. (C) 2019 Elsevier Masson SAS. All rights reserved.
机译:为了研究在配备平移整流罩的高超声速进气道中由不同幅度和频率的正弦背压扰动引起的冲击波的强迫振荡,已通过动态网格方法进行了数值模拟。结果表明,与恒定背压下获得的结果相比,在正弦形背压扰动下,随着前围板向下游移动,激振列振荡并向上游传播,而不是以显着的迁移距离突然越过冲击点。同时,当冲击波前缘在相邻的冲击点附近振荡时,强迫振荡的幅度增加。较大的背压扰动幅度不仅加剧了强制振荡,而且还增加了冲击波列在一个周期内穿过的冲击点的数量,这导致了冲击波列结构的复杂变化,甚至涉及到分离模式的转变。强制振荡的频率始终等于背压扰动之一,但由于背景波的干扰而具有一定的相位滞后。尽管可变背景波确实具有影响强制振荡幅度的能力,但它们无法更改强制振荡的频率。 (C)2019 Elsevier Masson SAS。版权所有。

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