首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Vortex-induced vibration of a 5:1 rectangular cylinder: A comparison of wind tunnel sectional model tests and computational simulations
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Vortex-induced vibration of a 5:1 rectangular cylinder: A comparison of wind tunnel sectional model tests and computational simulations

机译:涡旋诱导的5:1矩形圆柱的振动:风隧道截面模型测试和计算模拟的比较

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摘要

Considered to be representative of a generic bridge deck geometry and characterised by a highly unsteady flow field, the 5:1 rectangular cylinder has been the main case study in a number of studies including the "Benchmark on the Aerodynamics of a Rectangular 5:1 Cylinder" (BARC). There are still a number of limitations in the knowledge of (i) the mechanism of the vortex-induced vibration (VIV) and (ii) of the turbulence-induced effect for this particular geometry. Extended computational and wind tunnel studies were therefore conducted by the authors to address these Issues. This paper primarily describes wind tunnel and computational studies using a sectional model in an attempt to bring more insight into Point (i). By analysing the distribution and correlation of the surface pressure around an elastically mounted 5:1 rectangular cylinders in smooth and turbulent flow, it revealed that the VIV was triggered by the motion-induced leading-edge vortex; a strongly correlated flow feature close to the trailing edge was then responsible for an increase in the structural response.
机译:被认为是代表通用桥式甲板几何形状,并通过高度不稳定的流场,这是5:1矩形气缸已经是许多研究的主要案例研究,包括“矩形5:1圆柱体的空气动力学上的基准“(巴尔邦)。关于(i)涡旋诱导的振动(VIV)的机制和(ii)对该特定几何形状的湍流诱导效果的机制仍有许多限制。因此,作者进行了扩展的计算和风洞研究以解决这些问题。本文主要描述风洞和使用截面模型的计算研究,以试图为点(i)带来更多的洞察力。通过分析光滑且湍流的弹性安装5:1矩形圆柱体周围的表面压力的分布和相关性,揭示了VIV被运动诱导的前缘涡旋触发;然后,靠近后缘的强烈相关的流动特征是负责结构响应的增加。

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