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Nonlinear stability of non-stationary cross-flow vortices in compressible boundary layers

机译:可压缩边界层中非平稳错流涡旋的非线性稳定性

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摘要

The nonlinear evolution of long wavelength non-stationary cross-flow vortices in a compressible boundary layer is investigated and the work extends that of Gajjar (1994) to flows involving multiple critical layers. The basic flow profile considered in this paper is that appropriate for a fully three-dimensional boundary layer with O(1) Mach number and with wall heating or cooling. The governing equations for the evolution of the cross-flow vortex are obtained and some special cases are discussed. One special case includes linear theory where exact analytic expressions for the growth rate of the vortices are obtained. Another special case is a generalization of the Bassom & Gajjar (1988) results for neutral waves to compressible flows. The viscous correction to the growth rate is derived and it is shown how the unsteady nonlinear critical layer structure merges with that for a Haberman type of viscous critical layer.
机译:研究了可压缩边界层中长波长非平稳横流涡旋的非线性演化,并将Gajjar(1994)的工作扩展到涉及多个关键层的流动。本文考虑的基本流动曲线适用于具有O(1)马赫数且壁加热或冷却的全三维边界层。得出了横流涡旋演化的控制方程,并讨论了一些特殊情况。一种特殊情况包括线性理论,其中获得了涡旋增长率的精确解析表达式。另一个特殊情况是将中性波转换为可压缩流的Bassom&Gajjar(1988)结果的推广。得出了对增长率的粘性校正,并显示了非稳态非线性临界层结构如何与Haberman型粘性临界层的结构融合。

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    Gajjar, J. S. B.;

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  • 年度 1995
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