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Direct numerical simulation of flow separation behind a swept, rearward-facing step at Re-H=3000

机译:在Re-H = 3000时,后掠步骤后的流动分离的直接数值模拟

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摘要

The effect of sweep on a transitional separation bubble behind a backward-facing step is investigated using direct numerical simulation (DNS). The Reynolds number based on step height and free stream component normal to the step, Re-alpha=(HCinfinity cos alpha)u, is kept constant at 3000 for sweep angles alpha between 0 degrees and 60 degrees. Results agree well with two experimental investigations. Up to alpha=40 degrees, the mean flow follows the sweep-independence principle. For higher sweep angles, the size of the separated flow region is shortened considerably which is mainly due to an upstream shift of transition in the laminar shear layer emanating from the step and-to a lesser degree-to an increase in turbulent momentum flux <(uv)over bar>. Fluctuations of wall-stress and wall pressure are largest near the reattachment location and their magnitude scales with (C-infinity cos alpha)(2) for all sweep angles. Transition is dominated by a Kelvin-Helmholtz-type instability of the free shear layer. The influence of skewing on the growth rate of instability waves is weak in accordance with linear stability theory predictions of Lu and Lele [J. Fluid Mech. 249, 441 (1993)]. The upstream shift of transition for alpha greater than or equal to 50 degrees is related to the way how disturbances spread sidewise in a wedge-shaped region inside of the shear layer. (C) 2000 American Institute of Physics. [S1070-6631(00)50309-2]. [References: 41]
机译:使用直接数值模拟(DNS)研究了扫频对朝后步骤后面的过渡分离气泡的影响。对于0度和60度之间的后掠角α,基于台阶高度和垂直于该台阶的自由流分量的雷诺数Re-alpha =(HCinfinity cos alpha)/ nu保持恒定在3000。结果与两项实验研究非常吻合。直到alpha = 40度,平均流量都遵循扫描独立原理。对于较大的后掠角,分离出的流动区域的尺寸会显着缩短,这主要是由于层状剪切层中的过渡的上游位移从台阶产生的,而程度较小的则是湍流动量通量的增加<( uv)over bar>。在重新安装位置附近,壁面应力和壁面压力的波动最大,并且在所有扫掠角度下,其大小尺度均与(C-infinity cos alpha)(2)成比例。自由剪切层的开尔文-亥姆霍兹型不稳定性决定了过渡。根据Lu和Lele的线性稳定性理论预测,偏斜对失稳波增长率的影响微弱[J.流体机械。 249,441(1993)]。对于大于或等于50度的alpha,过渡的上游位移与扰动在剪切层内部的楔形区域中如何侧向传播的方式有关。 (C)2000美国物理研究所。 [S1070-6631(00)50309-2]。 [参考:41]

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