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首页> 外文期刊>Journal of Fluids and Structures >Influence of geometry on the galloping instability of rectangular cylinders in the Reynolds number range 1,000-10,000
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Influence of geometry on the galloping instability of rectangular cylinders in the Reynolds number range 1,000-10,000

机译:几何形状对雷诺数量范围1,000-10,000的矩形气缸奔腾不稳定性

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Wind tunnel experiments were used to investigate the effects of geometry on the transverse galloping behavior of nominally rectangular cylinders at Reynolds numbers from 1,000 to 10,000. Static measurements of the lift and the drag forces were used to determine the variation of the normal force coefficient with angle-of-attack, in accordance with the typical quasi-steady description of galloping. Cylinders with unity chord-to-thickness ratio (side ratio) were found to vary from unstable, to neutrally stable, to stable as the corner radius was increased from sharp, to half-round, to fully-round, with this effect diminishing with decreasing Reynolds number. Cylinders with side ratios of 2 or 3 demonstrated either stability over the entire Reynolds number range, or a transition from unstable to stable with increasing Reynolds number, depending on corner radius. The results demonstrated that in general, increasing the corner radius had a stabilizing effect. (C) 2020 Elsevier Ltd. All rights reserved.
机译:风洞实验用于研究几何形状对雷诺数的标称矩形圆柱横向疾驰行为的影响,从1,000到10,000。升力和阻力的静态测量用于根据疾驰的典型准稳定描述来确定与攻击角度的法向力系数的变化。发现具有Unity Chord到厚度比(侧比)的气缸因不稳定而变化,以中性稳定,随着角落半径从尖锐,到半圆,全面稳定,随着这种效果减少减少雷诺数。具有2或3的侧比的圆柱体在整个雷诺数范围内稳定,或者从不稳定到稳定的过渡随着雷诺数的增加,取决于拐角半径。结果证明,一般来说,增加角球半径具有稳定效果。 (c)2020 elestvier有限公司保留所有权利。

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