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Numerical simulation of surface pressure fluctuations in transonic fence-like flows with high Reynolds number

机译:雷诺数高的跨音速栅栏流表面压力波动的数值模拟

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Surface pressure fluctuations downstream of an inclined fence are investigated with compressible, large eddy simulations with wall-treatment. The simulations are performed at Re-h = 1.6 10(6) and transonic Mach numbers, which are realistic operating conditions in the aircraft industry. Simulation results are compared with existing measurements. Three different configurations are simulated to investigate the sensitivity to geometrical effects. Simulated cross-correlation spectra agreement with measurements appears to be on the level required for a good response prediction of an aircraft skin surface panel placed downstream of the fence. Root-mean-square pressure fluctuation levels are found to be closer to backward-facing step flow than standard fence flow. The effect of a leading edge upstream of the fence is shown to influence the spectral characteristics of the pressure load downstream of the fence. Correlation lengths and the propagation of pressure disturbances are investigated with auto and cross-correlation maps, phase angle analysis of the cross spectrum and frequency wave-number spectra. (C) 2016 Elsevier Inc. All rights reserved.
机译:用壁处理的可压缩大涡流模拟研究了倾斜围栏下游的表面压力波动。在Re-h = 1.6 10(6)和跨音速马赫数下进行仿真,这是飞机工业中的实际运行条件。仿真结果与现有测量结果进行比较。模拟了三种不同的配置以研究对几何效应的敏感性。模拟互相关光谱与测量值的一致性似乎处于对围栏下游放置的飞机蒙皮面板的良好响应预测所要求的水平上。发现均方根压力波动水平比标准围栏流更接近向后的阶梯流。已显示围栏上游的前缘的影响会影响围栏下游压力负载的频谱特性。利用自动和互相关图,互谱的相角分析和频率波数谱,研究了相关长度和压力扰动的传播。 (C)2016 Elsevier Inc.保留所有权利。

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