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A model for characterization of a vortex pair formed by shock passage over a light-gas inhomogeneity

机译:表征通过轻质气体非均匀性上的冲击波形成的涡流对的模型

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摘要

This work investigates the two-dimensional flow of a shock wave over a circular light-gas inhomogeneity in a channel with finite width. The pressure gradient from the shock wave interacts with the density gradient at the edge of the inhomogeneity to deposit vorticity around the perimeter, and the structure rolls up into a pair of counter-rotating vortices. The aim of this study is to develop an understanding of the scaling laws for the flow field produced by this interaction at times long after the passage of the shock across the inhomogeneity. Numerical simulations are performed for various initial conditions and the results are used to guide the development of relatively simple algebraic models that characterize the dynamics of the vortex pair, and that allow extrapolation of the numerical results to conditions more nearly of interest in practical situations. The models are not derived directly from the equations of motion but depend on these equations and on intuition guided by the numerical results. Agreement between simulations and models is generally good except for a vortex-spacing model which is less satisfactory. ududA practical application of this shock-induced vortical flow is rapid and efficient mixing of fuel and oxidizer in a SCRAMJET combustion chamber. One possible injector design uses the interaction of an oblique shock wave with a jet of light fuel to generate vorticity which stirs and mixes the two fluids and lifts the burning jet away from the combustor wall. Marble proposed an analogy between this three-dimensional steady flow and the two-dimensional unsteady problem of the present investigation. Comparison is made between closely corresponding three-dimensional steady and two-dimensional unsteady flows, and a mathematical description of Marble's analogy is proposed.
机译:这项工作研究在有限宽度的通道中圆形光-气体不均匀性上的冲击波的二维流动。冲击波产生的压力梯度与不均匀性边缘处的密度梯度相互作用,在周界周围沉积涡流,并且该结构卷成一对反向旋转的涡流。这项研究的目的是,在非均匀性冲击通过后的很长时间内,逐渐了解这种相互作用所产生的流场的定标规律。针对各种初始条件进行了数值模拟,其结果用于指导相对简单的代数模型的发展,这些模型表征了涡旋对的动力学特性,并允许将数值结果外推到实际情况中更感兴趣的条件。这些模型不是直接从运动方程式导出的,而是取决于这些方程式和数值结果指导的直觉。模拟和模型之间的一致性通常很好,但涡旋间隔模型不太令人满意。震荡涡流的实际应用是在SCRAMJET燃烧室内快速有效地混合燃料和氧化剂。一种可能的喷射器设计是利用斜向冲击波与轻质燃料射流的相互作用产生涡旋,该涡旋将两种流体搅动并混合,并将燃烧的射流提离燃烧室壁。 Marble提出了这种三维稳态流与本研究的二维非稳态问题的类比。对紧密对应的三维稳态流和二维非稳态流进行了比较,提出了Marble类比的数学描述。

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