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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental study on transverse flow-induced oscillations of a square-section cylinder at low mass ratio and low damping
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Experimental study on transverse flow-induced oscillations of a square-section cylinder at low mass ratio and low damping

机译:低质量比低阻尼的方形截面圆柱体横流振动的实验研究

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This article presents experimental results concerning the transverse flow-induced oscillations of a square-section cylinder for several values of the mass ratio, ranging from 2.2 to 14.4, and low mechanical damping. Experiments were carried out in a re-circulated free-surface water channel. A rigid square section cylinder was fixed to an elastic system made with dual (parallel) metallic blades connected by a rigid block. By this way the square-section cylinder is free to oscillate in the transverse (normal to flow) direction. The elastic system presents linear behavior in terms of stiffness and damping. The functional dependence between the steady-state amplitude and frequency of oscillations with reduced velocity is characterized. A re-normalization plot appears when steady-state amplitude of oscillations is plotted against the "true" reduced velocity, which is defined as the reduced velocity divided by the dimensionless frequency of oscillations. Experiments also allow to discuss other aspects, like the reduced velocity at which oscillations are expected to start depending on the value of the mass ratio, how close to sinusoidal (say, fixed amplitude and frequency) the oscillations are, or when quasi-steady conditions are expected to be met. (C) 2016 Elsevier Inc. All rights reserved.
机译:本文介绍了关于质量比为2.2到14.4的几个质量比值和低机械阻尼的方形截面圆柱体的横向流动引起的振荡的实验结果。实验是在再循环的自由表面水通道中进行的。刚性的方形截面圆柱体固定到由双(平行)金属刀片制成的弹性系统,该金属刀片通过刚性块连接。通过这种方式,方形截面的圆柱体可以在横向(垂直于流动方向)自由摆动。弹性系统在刚度和阻尼方面表现出线性行为。表征了稳态振幅和速度降低的振荡频率之间的函数关系。当针对“真实”降低的速度绘制振荡的稳态幅度时,会出现一个重新归一化图,这是指降低的速度除以振荡的无量纲频率。实验还可以讨论其他方面,例如,取决于质量比的值,预期振动开始的速度降低,振动接近正弦波(例如,固定的振幅和频率),或者在准稳态条件下有望实现。 (C)2016 Elsevier Inc.保留所有权利。

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