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Weakly Nonparallel and Curvature Effects on Stationary Crossflow Instability:Comparison of Results from Multiple-Scales Analysis and Parabolized Stability Equations

机译:弱平行和曲率对平稳横流不稳定性的影响:多尺度分析和抛物化稳定性方程的结果比较

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A multiple-scales approach is used to approximate the effects of nonparallelismand streamwise surface curvature on the growth of stationary crossflow vortices in incompressible, three-dimesional boundary layers. The results agree with results predicted by solving the parabolized stability equations in regions where the nonparallelism is sufficiently weak. As the nonparallelism increases, the agreement between the two approaches worsens. An attempt has been made to quantify the nonparallelism on flow stability in terms of a nondimensional number that describes the rate of change of the mean flow relative to the disturbance wavelength. We find that the above nondimensional number provides useful information about the adequacy of the multiple-scales approximation for different disturbances for a given flow geometry, but the number does not collapse data for different flow geometries onto a single curve.

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