首页> 外文会议>IUTAM Symposium on Laminar-Turbulent Transition >UNSTEADY DISTURBANCE GENERATION AND AMPLIFICATION IN THE BOUNDARY-LAYER FLOW BEHIND A MEDIUM-SIZED ROUGHNESS ELEMENT
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UNSTEADY DISTURBANCE GENERATION AND AMPLIFICATION IN THE BOUNDARY-LAYER FLOW BEHIND A MEDIUM-SIZED ROUGHNESS ELEMENT

机译:在中型粗糙度元件后面边界层流动的不稳定干扰生成和放大

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In the present work we investigate receptivity and disturbance amplification behind a circular roughness element in a zero-pressure-gradient flat-plate boundary layer with the aim to identify and understand the basic mechanisms at work. The low disturbance background and the high repeatability of the direct numerical simulations allow to evaluate the different contributions of acoustic-roughness receptivity and of local disturbance amplification, A. distinct feature of the boundary-layer flow with roughness element are streamwise streaks which develop from the spanwise edges of the roughness. Small-scale three-dimensional disturbances develop and amplify within these streaks both by instability and by receptivity. For the present small amplitude unsteady forcing however, they remain confined to these areas. In contrast to this, the far-field receptivity result is similar to a wave train generated by periodic suction and blowing at the wall.
机译:在本工作中,我们研究了零压力梯度平板边界层中的圆形粗糙度元件背后的接受性和干扰放大,其目的是识别和理解工作的基本机制。低扰动背景和直接数值模拟的高可重复性允许评估声学粗糙度接收性和局部扰动放大的不同贡献,a。边界层流动与粗糙度元素的不同特征是流动的条纹,从而形成粗糙度的霉菌边缘。小规模的三维干扰通过不稳定性和接受性在这些条纹内发生和放大。对于目前的小幅度不稳定,它们仍然限制在这些区域。与此相反,远场接收结果类似于由周期性抽吸产生并在墙壁上吹来产生的波动火车。

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