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A Reattaching Free Shear Layer in Compressible Turbulent Flow: A Comparison of Numerical and Experimental Results

机译:可压缩湍流中的自由附着剪切层:数值和实验结果的比较

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摘要

An investigation of the two-dimensional, free turbulent shear layer reattaching on an inclined surface at Mach 2.92 and at a high Reynolds number is described. The test geometry is specifically designed to isolate the reattachment process of a high-speed separated flow. A numerical solution of the time-dependent, Reynolds-averaged, Navier-Stokes equations for the entire flow field, employing a two-equation eddy viscosity turbulence model, is presented. Detailed comparisons of prediction and experiment are made in the free shear layer, at reattachment, and in the developing boundary layer downstream. These comparisons include mean surface quantities as well as mean and fluctuating flow-field quantities. Although the overall features of this complex flow field are predicted, there are several deficiencies in the numerical solution, particularly in the region downstream of reattachment. Modifications of the turbulence model to correct these deficiencies are discussed.
机译:描述了二维,自由湍流剪切层在2.92马赫和高雷诺数下重新附着在倾斜表面上的研究。测试几何体专门设计用于隔离高速分离流的重新连接过程。提出了一个基于时间的,雷诺平均的,整个流场的Navier-Stokes方程的数值解,采用了两方程涡流粘度湍流模型。在自由剪切层,重新连接和下游的边界层发育中,对预测和实验进行了详细的比较。这些比较包括平均表面数量以及平均和波动流场数量。尽管可以预测此复杂流场的总体特征,但数值解法仍存在一些不足,特别是在重新连接的下游区域。讨论了修正湍流模型以纠正这些缺陷的方法。

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