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On the fluctuating wall pressure field in tube banks

机译:关于管束中波动的壁面压力场

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This paper presents the experimental analysis of pressure and velocity fluctuations of the cross flow in tube banks. with triangular and square arrangements, and four different aspect ratios. Air is the working fluid, driven by a centrifugal blower, passed by a settling chamber and a set of honeycombs and screens, before reaching the tube bank at an incidence angle of 90°. Both triangular and square arrangements have pitch-to-diameter ratios P/D = 1.60, 1.26, 1.16 and 1.05, with Reynolds numbers, calculated with the tube diameter and the velocity of the flow in the narrow gap between the tubes, from Re = 4 × 10~4 to 7 ×10~4. Velocity and velocity fluctuations were measured by a constant-temperature hot-wire anemometer, while pressure fluctuations were measured by a piezo-resistive pressure transducer mounted inside one of the tubes in the bank. Behavior of fluctuating quantities is described by means of dimensionless root mean square values and autospectral density functions, while their interdependence is discussed based on cross-correlation functions.
机译:本文对管束中横流的压力和速度波动进行了实验分析。三角形和正方形排列,以及四个不同的纵横比。空气是一种工作流体,由离心鼓风机驱动,经过一个沉降室和一组蜂窝和筛网,然后以90°的入射角到达管束。三角形和正方形排列的螺距与直径之比P / D = 1.60、1.26、1.16和1.05,雷诺数是根据管的直径和管之间狭窄间隙中的流速从Re = 4×10〜4至7×10〜4。速度和速度波动是通过恒温热线风速计测量的,而压力波动是通过安装在排中一根管子内部的压阻压力传感器测量的。通过无量纲均方根值和自谱密度函数描述波动量的行为,同时基于互相关函数讨论它们的相互依赖性。

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