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Experimental study of cactus-like body shape on flow-induced vibration mitigation of clustered cylinders

机译:仙人掌体形状对流动诱导的簇状汽缸的实验研究

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Vortex-Induced Vibration (VIV) is a major contributor to the fatigue damage of marine risers which are often arranged in an array configuration. In addition to helical strakes and fairings, studies have been strived in searching for possible VIV suppression techniques. Inspired by giant Saguaro Cacti, flexible cylinders of different cactus-shaped cross sections were tested in a water tunnel facility, and test results showed that cactus-like body shapes reduced VIV responses of a cylinder at no cost of significant increase of drag. A series of experiments were conducted on a pair of two tandem-arranged flexible cylinders and an array of four cylinders in a square configuration to investigate the effects of wake on the dynamic responses of cylinders and the VIV mitigation effectiveness of the cactus-like body shape. Results showed that the cylinders in a square configuration, either at the upstream or downstream positions, might have larger dynamic responses than those of a single cylinder. The cactus-like body shape could mitigate VIV responses of cylinders at upstream positions in an array configuration; however, similar to helical strakes, the mitigation efficiency was reduced on downstream cylinders. Note that the cactus-like cross-sectional shape investigated was not optimized for VIV suppression. The present study indicates that the modification of the cross-sectional shape of a cylinder to a well-designed cactus-like shape may be used as an alternative technique to mitigate the VIV of marine risers.
机译:涡旋引起的振动(VIV)是船只疲劳损坏的主要因素,这些船只通常以阵列配置排列。除了螺旋际和公平之外,还在寻找可能的VIV抑制技术方面进行了研究。灵感来自巨型仙人掌仙人掌,在水隧道设施中测试了不同仙人掌形横截面的柔性气瓶,测试结果表明,仙人掌状体形状减少了圆柱体的VIV响应,无需显着增加阻力。在一对两个串联布置的柔性缸和四个气缸中进行的一系列实验,在方形配置中进行四个气缸,以研究唤醒对圆柱体动态响应的影响和仙人掌状体形状的VIV缓解效果。结果表明,在上游或下游位置处的方形配置中的汽缸可能具有比单个汽缸更大的动力响应。仙人掌的体形可以减轻阵列配置中的上游位置的VIV响应;然而,类似于螺旋轨迹,下游圆柱体减轻了缓解效率。注意,研究的仙人掌状横截面形状未针对VIV抑制进行优化。本研究表明将气缸的横截面形状的改变为设计良好设计的仙人掌形状,可以用作减轻船用立管的VIV的替代技术。

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