首页> 外文期刊>Journal of Fluid Mechanics >A STUDY OF NON-PARALLEL AND NONLINEAR EFFECTS ON THE LOCALIZED RECEPTIVITY OF BOUNDARY LAYERS
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A STUDY OF NON-PARALLEL AND NONLINEAR EFFECTS ON THE LOCALIZED RECEPTIVITY OF BOUNDARY LAYERS

机译:边界层局部接收率的非并行和非线性影响研究

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The acoustic receptivity due to localized surface suction in a two-dimensional boundary layer is studied using a finite-Reynolds-number theory and direct numerical simulation of the Navier-Stokes equations. Detailed comparisons between the two methods are used to determine the bounds for application of the theory. Results show a 4% difference between the methods for receptivity in the neighbourhood of branch I with low suction levels, low acoustic levels, and a moderate frequency; we attribute this difference to non-parallel effects, not included in the theory. The difference is larger for receptivity upstream of branch I, and smaller for receptivity downstream of branch I. As the peak suction level is increased to 1% of the free-stream velocity, the simulations show a nonlinear deviation from the theory. Suction levels as small as 0.1% are shown to have a significant effect on the instability growth between branch I and branch II. Increasing the acoustic amplitude to 1% of the steady free-stream velocity produces no significant nonlinear effect. [References: 18]
机译:使用有限雷诺数理论和Navier-Stokes方程的直接数值模拟研究了二维边界层中局部表面吸力引起的吸声性。两种方法之间的详细比较用于确定该理论的应用范围。结果表明,在低吸力水平,低声学水平和中等频率的分支I附近,接收方法之间的差异为4%。我们将此差异归因于非并行效应,该效应未包含在理论中。对于支路I上游的接受度,该差异较大,而对于支路I下游的接受度,该差异较小。当峰值吸力水平提高到自由流速度的1%时,模拟结果显示出与理论的非线性偏差。事实表明,低至0.1%的吸力水平对分支I和分支II之间的不稳定增长具有显着影响。将声振幅增加到稳定自由流速度的1%不会产生明显的非线性影响。 [参考:18]

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