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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >An experimental study of a spanwise structure around a reattachment region of a two-dimensional backward-facing step
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An experimental study of a spanwise structure around a reattachment region of a two-dimensional backward-facing step

机译:二维后向台阶重装区周围翼展方向结构的实验研究

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The flow field downstream of a two-dimensional backward-facing step is usually assumed to be independent of the direction along the span of the step. This assumption is made even though it is well known that the flow exhibits a three-dimensional vortex structure. This state of affairs is no doubt due to the lack of detailed information concerning the characteristics of the vortex structure. In this paper, we report our investigations of the flow structure around a reattachment region using an ultrasound velocity profiler to measure the spanwise velocity component as a function of the spanwise coordinate and time. The flow field is found to be very complex both in space and time. The low-frequency component of the spanwise velocity fluctuation becomes dominant in the near-wall region, with peaks in the power spectrum at frequencies fh/Uc = 0.05 and fh/Uc = 0.012. Using multiple ultrasound transducers, we also find that a streamwise vortex exists in the flow. [References: 19]
机译:通常假定二维向后的台阶下游的流场与沿着台阶跨度的方向无关。即使众所周知流动具有三维涡旋结构,也可以做出此假设。毫无疑问,由于缺乏有关旋涡结构特征的详细信息,因此这种状况。在本文中,我们报告了我们对使用超声速度轮廓仪测量沿水平方向速度分量作为沿水平方向坐标和时间的函数的重新连接区域周围的流动结构的研究。发现流场在空间和时间上都非常复杂。跨度速度波动的低频成分在近壁区域占主导地位,功率谱中的峰值出现在频率fh / Uc = 0.05和fh / Uc = 0.012处。使用多个超声换能器,我们还发现流中存在沿流方向的涡流。 [参考:19]

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