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The influence of wall suction and blowing on boundary-layer laminar streaks generated by free-stream vortical disturbances

机译:壁面吸吹对自由流涡旋扰动产生的边界层流层条纹的影响

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The effect of mean flow wall transpiration on boundary-layer fluctuations generated by free-stream disturbances of the convected gust type is investigated numerically. The theoretical frameworks of Leib [J. Fluid Mech. 380, 169 (1999)] and Ricco [J. Fluid Mech. 638, 267 (2009)], based on the linearized unsteady boundary-region equations, are adopted. It is found that wall suction has a more significant attenuating effect on the low-frequency laminar streaks, while high-frequency disturbances are brought closer to the wall, but unaffected in magnitude. A simple asymptotic result, confirmed by the numerical calculations, shows that the characteristic peak of the laminar streaks in the core of the boundary layer may be suppressed completely by suction if this is sufficiently intense. Thought experiments of the modification induced by suction on existing wind-tunnel root-mean-square data are carried out. The findings are compared with other laboratory data with wall suction, and the reasons for discrepancy are outlined.
机译:数值研究了平均流动壁蒸腾对对流阵风类型的自由流扰动产生的边界层波动的影响。 Leib的理论框架[J.流体机械。 380,169(1999)]和Ricco [J.流体机械。 [638,267(2009)],基于线性化非定常边界区域方程。发现壁吸对低频层状条纹具有更显着的衰减作用,而高频扰动则更靠近壁,但幅度不受影响。通过数值计算证实的简单渐近结果表明,如果边界层芯部的层状条纹的特征峰足够强,则可以通过抽吸完全抑制其特征峰。在已有的风洞均方根数据上进行了吸力引起的修改的思想实验。将发现的结果与其他使用壁吸的实验室数据进行比较,并概述出现差异的原因。

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