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Vortex-induced vibrations and lock-in phenomenon of bellows structure subjected to fluid flow

机译:涡旋引起的波纹管结构的振动和锁定现象受到流体流动的结构

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This paper deals with an experimental study on vortex-induced vibrations of bellows structures subjected to fluid flow. In the experiments, the bellows structure consists of flexible convolutions, and is subjected to fluid flow in a water channel. The vibration strains of the flexible convolutions are measured with increasing flow velocity. The vortex-induced responses are examined with changing the convolution pitch and number of the flexible convolutions. Moreover, the vortex shedding coupled with the vibrations of the convolutions is visualized. As a result, it is clarified that the vortex-induced vibration and lock-in phenomenon occur to the flexible bellows structures with large amplitude. The boundary of the lock-in region and Strouhal number are clarified, and detailed excitation mechanism of the vortex-induced vibration and lock-in phenomenon due to the vortex shedding is presented.
机译:本文涉及涡旋诱导的波纹管结构振动的实验研究,该涡波结构受到流体流动的结构。在实验中,波纹管结构由灵活的卷曲组成,并且在水通道中进行流体流动。通过增加的流速来测量灵活卷曲的振动应变。通过改变卷积音调和灵活卷积的数量来检查涡旋诱导的响应。此外,可视化与卷曲振动联接的涡旋脱落。结果,阐明了涡旋诱导的振动和锁定现象对具有大振幅的柔性波纹管结构。阐明了锁定区域和Strouhal数的边界,并阐明了由于涡旋脱落引起的涡旋诱导的振动和锁定现象的详细激发机制。

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