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Steadiness of wave complex induced by oblique detonation wave reflection before an expansion corner

机译:倾斜爆炸波反射在膨胀角之前诱导的波复合物的稳定性

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Oblique detonation wave (ODW) reflection before an expansion corner leads to a sophisticated wave complex, whose steadiness is critical to achieve a practical oblique detonation engine. Both steady and unsteady wave complexes have been observed before, but the features of unsteady wave dynamics with related unsteadiness rules are still unclear so far. In this study, the ODW reflections before an expansion corner have been simulated using the reactive Euler equations with a two-step induction-reaction kinetic model, and the wave complex structures and dynamics have been analyzed correspondingly. Three subsonic zones have been distinguished, and their interactions were found to determine the wave complex steadiness. The main subsonic zone derives from the ODW reflection, which locates behind the Mach stem, while two other subsonic zones form due to the shock reflection downstream. The two downstream subsonic zones might travel upstream and combine with the main subsonic zone, resulting in two different unsteadiness modes. These wave complex dynamics were analyzed with respect to the deflection location, deflection angle and inflow Mach number, leading to the boundaries of combustion modes and ascertaining the rule of mode regime. Some transient phenomena related with the flow instability have been also discussed, clarifying fine flow structures further. (C) 2021 Elsevier Masson SAS. All rights reserved.
机译:斜爆波(ODW)反射在膨胀角之前导致复杂的波复合物,其稳定性对于实现实用的倾斜爆炸发动机至关重要。之前已经观察到稳定和不稳定的波复合物,但到目前为止,具有相关不稳定规则的非定常波动力的功能尚不清楚。在该研究中,使用具有两步感应反应动力学模型的反应性欧拉方程模拟膨胀角之前的ODW反射,并且已经相应地分析了波复杂结构和动力学。已经区分了三个子系统,发现它们的相互作用来确定波复杂的稳定性。主要子源区源于ODW反射,该反射位于马赫杆后面,而另外两种其他亚音区形式由于下游的冲击反射。两个下游亚音区区域可能会在上游行进并与主亚音区相结合,导致两种不同的不稳定模式。相对于偏转位置,偏转角和流入马赫数分析这些波复杂动态,导致燃烧模式的边界和确定模式制度的规则。还讨论了与流量不稳定性相关的一些瞬态现象,进一步阐明细流量结构。 (c)2021 Elsevier Masson SAS。版权所有。

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