论文标题

非均匀性诱导的II型不对称帽冲击马赫反射的分析和数值研究过度膨胀的超音速射流

Analytical and Numerical Studies of the Non-uniformity induced Type II Asymmetric Cap Shock Mach Reflection in Over-expanded Supersonic Jets

论文作者

Hew, Justin Kin Jun, Boswell, Rod W., Federrath, Christoph, Gopalapillai, Rajesh, Paramanantham, Vinoth

论文摘要

进行了一项结合的分析和数值研究,以研究过度膨胀的超音速射流外的不对称盖震动不均匀的马赫反射(CSMR)现象。先前的分析作品仅考虑了楔形引起的稳定对称和不对称的马赫反射(MR)构型,以及在开放式射流中的对称MR。但是,在喷嘴流场中发生了另一种结构,称为不均匀性引起的盖震图。我们得出了一个新的分析模型,以通过在先前的对称MACH反射模型上扩展内部冲击,预测不对称CSMR的波结构。与楔流外壳不同,通过假设上下域中的上游马赫数不同,在上游和下域中通过平均的流场和滑动倾斜角度预测了不对称性,从而结合了流动不均匀。数值方法利用欧拉求解器与开发理论进行比较。发现该模型可以充分预测从数值模拟获得的冲击结构,并且可以用于各种参数集来捕获总体直接的MACH反射O [DIMR+DIMR]配置。新的分析模型以及马赫茎轮廓和冲击曲率也很好地捕获了von Neumann标准。基于分析和数值观察,还假设MR结构在过度扩张的射流中的稳定性。

A combined analytical and numerical study is conducted to investigate the asymmetric cap-shock non-uniform Mach Reflection (csMR) phenomenon outside of an over-expanded supersonic jet. Prior analytical works have only considered the wedge-induced steady symmetric and asymmetric Mach reflection (MR) configurations, as well as symmetric MR in an open jet. However, there is another structure occurring in nozzle flow fields known as a non-uniformity induced cap-shock pattern. We derive a new analytical model to predict the wave structure of the asymmetric csMR in the absence of internal shocks by extending on a prior symmetric Mach reflection model. Different from the wedge flow case, flow non-uniformity is incorporated by assuming different upstream Mach numbers in both upper and lower domains, where the asymmetry is predicted through averaged flowfields and slipstream inclination angles. The numerical approach utilises an Euler solver for comparisons to the developed theory. It is found that the model adequately predicts the shock structure obtained from numerical simulations, and can be utilised for various sets of parameters to capture the overall direct Mach reflection o[DiMR+DiMR] configuration. The von Neumann criterion is also well captured by the new analytic model, along with the Mach stem profile and shock curvatures. Based on the analytical and numerical observations, a hypothesis is also made regarding the stability of MR structures within an over-expanded jet.

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