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Experimental study of vortex-induced vibration of a twin-tube submerged floating tunnel segment model

机译:双管埋浮隧道段模型涡旋诱导振动的实验研究

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The cross-flow vortex-induced vibration features of a submerged floating tunnel element, which is composed of two rigidly connected cylinders in a tandem configuration, were investigated via a self-oscillation model test in a steady flow. The Reynolds number ranged from 2x10(4) to 9x10(4), and the ratio of the center-to-center distance between the two cylinders and cylinder diameter varied within a range of 2-4. The vortex induced vibration responses and lift forces on the up- and downstream cylinders were studied under different spacing ratios and compared with those on a single cylinder. The results show that the spacing ratio plays an important role in VIV until the ratio reaches 4. For a small spacing ratio, a significant difference between the lift forces on the up- and downstream cylinders appears and induces a large torsional moment. For the convenience of engineering application, a torsional coefficient was proposed. The maximum torsional coefficient can reach 2.9, 1.2 and 0.98 for spacing ratios of 2, 3 and 4 at the reduced velocity of 5, respectively. Considering the vortex induced vibration responses as well as the torsional moment, a spacing ratio of 3 was recommended for tandem floating tunnel design. (C) 2020 Elsevier Ltd. All rights reserved.
机译:通过稳定流动的自振荡模型试验研究了由串联配置中的两个刚性连接的圆柱组成的横流涡旋隧道元件的横流涡旋沟振动特征。雷诺数的范围从2×10(4)到9x10(4),两个汽缸和圆柱直径之间的中心到中心距离的比率在2-4的范围内变化。在不同的间隔比下研究了涡旋诱导的振动响应和上游气缸上的提升力,并与单个圆筒上的那些进行比较。结果表明,间距比在VIV中起重要作用,直到比率达到4.对于小的间距比,上游气缸上的升力之间的显着差异并诱导大的扭转力矩。为了便于工程应用,提出了一种扭转系数。对于2,3和4的间隔比分别为5,最大扭转系数可以分别为2,3和4的间隔比率达到2.9,1.2和0.98。考虑到涡流诱导的振动响应以及扭转力矩,建议为串联浮隧道设计建议3的间距比。 (c)2020 elestvier有限公司保留所有权利。

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