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Detecting boundary-layer separation point with a micro shear stress sensor array

机译:用微剪应力传感器阵列检测边界层分离点

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Knowledge of wall shear stress is essential for understanding the dynamics of fluid flow, and its measurement holds great importance for investigating and controlling near wall turbulence and flow separation in aerodynamic control. Based on the well-established principle of thermal anemometry, this paper describes an array of thin film sensors on a flexible polymide substrate. Then, Computational Fluid Dynamics (CFD) simulations were performed to estimate the corresponding shear stress distribution within the column cylinder aerofoil at flow conditions is the velocity 17.3 m/s. In wind tunnel tests, by disposed the two sensor arrays output signals by the sensors output voltages means and RMS values, the result proved these flexible arrays could detect the location of the fluid separation point roughly. (c) 2006 Elsevier B.V. All rights reserved.
机译:壁切应力的知识对于理解流体流动的动力学至关重要,其测量对于研究和控制空气动力学控制中的近壁湍流和流动分离非常重要。基于公认的热风速测量原理,本文描述了在柔性聚酰亚胺基板上的一系列薄膜传感器。然后,进行了计算流体动力学(CFD)仿真,以估计在流速为17.3 m / s的流动条件下,圆柱圆柱翼型内相应的切应力分布。在风洞测试中,通过将两个传感器阵列的输出信号分别设置为传感器输出电压的均值和RMS值,结果证明这些柔性阵列可以粗略地检测出流体分离点的位置。 (c)2006 Elsevier B.V.保留所有权利。

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