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首页> 外文期刊>Journal of Spacecraft and Rockets >Boundary-Layer Stability Analysis of HIFiRE-5b Flight Geometry
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Boundary-Layer Stability Analysis of HIFiRE-5b Flight Geometry

机译:HIFiRE-5b飞行几何的边界层稳定性分析

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Boundary-layer stability and laminar-to-turbulent transition are examined on the HIFiRE-5b flight geometry using provided flight conditions at two flight times. The parabolized stability equations and spatial biglobal theory are used for this analysis because they are efficient and accurate techniques to model the transition process. Two-dimensional and three-dimensional instabilities are investigated with the parabolized stability equations. The primary instabilities investigated here are the second mode along the attachment line and stationary crossflow away from the geometric planes of symmetry. The spatial biglobal equations are used to calculate secondary instabilities within a stationary crossflow vortex. This work demonstrates that coupling nonlinear parabolized stability equations with spatial biglobal equations could provide a generalized technique to predict transition onset in flows with stationary crossflow as the dominant mechanism. The transition onset location is predicted by the location of the secondary instability neutral point. Moreover, the observed amplification of the secondary instabilities could potentially be the predictor for breakdown to turbulence, and it shows good agreement with the flight data.
机译:在两个飞行时间使用提供的飞行条件,在HIFiRE-5b飞行几何体上检查了边界层稳定性和层流到湍流的过渡。抛物线稳定性方程和空间双全局理论用于此分析,因为它们是对过渡过程进行建模的有效且准确的技术。利用抛物线稳定性方程研究了二维和三维不稳定性。这里研究的主要不稳定性是沿着连接线的第二种模式,以及远离对称几何平面的固定横流。空间双全局方程用于计算固定错流涡流内的次要不稳定性。这项工作表明,将非线性抛物稳定方程与空间双全局方程耦合起来,可以提供一种通用技术来预测以平稳横流为主导机制的流动的转变开始。过渡开始位置由次级不稳定性中性点的位置预测。此外,观察到的次级不稳定性的放大可能是湍流破坏的预测指标,并且与飞行数据显示出良好的一致性。

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