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Experimental study of vortex-induced vibrations of flexibly mounted cylinder in circulating water tunnel

机译:循环水隧道中柔性圆柱体的涡激振动实验研究

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摘要

This paper presents the experimental results concerning the vortex-induced vibration phenomena of a flexibly mounted enclosed smooth rigid pipe. The experiment was newly designed and fabricated, utilizing the circulating water tunnel concept. New results on the dynamic response of the vibrating system are shown. The stream flow was generated by using a large displacement volume submersible water tank, controlled through the ABB inverter. The rotation frequency controlled based was implemented in the ABB inverter, and the measurement of stream flow was taken by using a flow rate sensor at the respective pump rotation frequency. The Reynolds number of the experiments ranges from to , and its corresponding reduced velocities, based on the natural frequency in still water, vary up to . The riser modeled pipe was positioned in vertical direction, and it is flexibly mounted at both ends. The system has low mass ratio and damping coefficient, with the values 1.184 and 0.08, respectively. The mass-damping ratio is 0.09472. The results for the bare pipe cylinder in this experimental setup are in good agreementwith othermeasurements found in the literature.
机译:本文介绍了有关柔性安装的封闭式光滑刚性管的涡激振动现象的实验结果。该实验是利用循环水隧道概念重新设计和制造的。显示了振动系统动态响应的新结果。通过使用大排量的潜水水箱产生水流,该水箱通过ABB逆变器进行控制。在ABB逆变器中实现了基于旋转频率的控制,并使用流量传感器在相应的泵旋转频率下对流量进行了测量。实验的雷诺数范围为到,根据静止水中的自然频率,其相应的降低的速度变化范围最大为。立管模型管沿垂直方向放置,并且两端灵活安装。该系统的质量比和阻尼系数低,分别为1.184和0.08。质量阻尼比为0.09472。在该实验装置中,裸管圆柱体的结果与文献中发现的其他测量结果非常吻合。

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