首页> 外文会议>ASME Fluids Engineering Division Meeting >EXPERIMENTAL STUDY ON FLOW CHARACTERISTICS OF A RECTANGULAR CYLINDER WITH A CROSS-SECTION OF VARIOUS WIDTH/HEIGHT RATIOS SUBMERGED IN OSCILLATORY FLOW
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EXPERIMENTAL STUDY ON FLOW CHARACTERISTICS OF A RECTANGULAR CYLINDER WITH A CROSS-SECTION OF VARIOUS WIDTH/HEIGHT RATIOS SUBMERGED IN OSCILLATORY FLOW

机译:横截面横截面横截面横截面横截面的实验研究

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The forces acting upon and the flow patterns around a rectangular cylinder with a cross-section of width/height ratio of 0.2 - 3.0 submerged in oscillatory flow were studied by using a Utube water tank. Measurements were made of both in-line and transverse forces of rectangular cylinders in a wide range of Keulegan-Carpenter number (KC) from 1 to 160. The force signals were spectrally analyzed to determine the dominant frequencies, and the flow visualization technique was also employed to understand the correspondence between the flow patterns and the force coefficients. In this paper we discussed how the width/height ratio of the cylinder to influence the flow patterns and the aerodynamic characteristics of a rectangular cylinder. We found that a drag coefficient CD of the d/h=0.6 cylinder becomes the biggest beyond KC≈120, compared with other cases of the d/h cylinder in oscillatory flow. The good correlations between KC number and the flow patterns, and CD and wake width were shown. From the predominant frequency components of the fluctuating transverse forces, it was found that the values of Strouhal numbers reduced by a maximum velocity are similar to the results in the case of a uniform flow for d/h≤1.0.
机译:通过使用UTUBE水箱,研究了作用的作用和矩形圆柱围绕矩形圆柱围绕宽度/高度比为0.2-3.0的横截面的横截面。在宽范围的keulegan-carpenter数(Kc)中由矩形圆柱体的在线和横向力的横向力从1〜160中进行。分析力信号以确定显性频率,并且流动可视化技术也是如此用于了解流动模式和力系数之间的对应关系。在本文中,我们讨论了气缸的宽度/高度比如何影响矩形圆柱的流动模式和空气动力学特性。与振荡流动流动中的D / H汽缸的其他情况相比,我们发现D / H = 0.6圆柱的拖动系数Cd变为超出Kc≈120之外。显示了KC号与流动模式和CD和唤醒宽度之间的良好相关性。从波动横向力的主要频率分量来看,发现通过最大速度降低的斯特氏数量的值与D /H≤1.0的均匀流的情况类似。

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