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首页> 外文期刊>Flow, turbulence and combustion >Direct Numerical Simulation and Experimental Investigation on Suppression of Vortex Induced Vibrations of Circular Cylinders by Radial Water Jets
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Direct Numerical Simulation and Experimental Investigation on Suppression of Vortex Induced Vibrations of Circular Cylinders by Radial Water Jets

机译:径向水射流抑制圆柱涡旋振动的直接数值模拟和实验研究

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摘要

The present paper deals with suppression of vortex induced vibrations (VIV) by introducing radial water jets from circular openings in the wall of the oscillating cylinder. Overpressure within the water-filled cylinder propels water jets blowing out into the ambient flow as a means to alter the vortex shedding process. This flow will introduce a disturbance that is expected to yield reduced VIV amplitudes. Results are presented from experiments in a towing tank testing a spring-supported cylinder with two straight rows of radial water jets along the the cylinder, located at positions +120° and -120° on the cylinder circumference. A smooth cylinder with no openings is tested for comparison. Direct Numerical Simulations (DNS) have been performed using the Spectral/hp element code Nεκταr. Outflow through openings in the cylinder wall is modeled, and a parameter study is performed where number of jets as well as jet location on the cylinder circumference and jet flow rate are varied.
机译:本论文通过从振荡筒壁上的圆形开口引入径向水射流来抑制涡激振动(VIV)。充满水的气缸内的超压将喷水喷射到周围流中,作为改变涡流脱落过程的一种手段。该流将引入干扰,预期会产生减小的VIV幅度。拖曳水箱的实验结果来自于测试弹簧支撑的汽缸,沿汽缸有两排径向的水射流,位于汽缸圆周上+ 120°和-120°的位置。测试了没有开口的光滑圆柱体,以进行比较。使用Spectral / hp元素代码Nεκταr执行了直接数值模拟(DNS)。对通过汽缸壁上的开口的流出进行建模,并进行参数研究,其中喷嘴的数量以及气缸圆周上的喷嘴位置和喷嘴流量会发生变化。

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