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The effect of mass ratio and spring stiffness on flow-induced vibration of a square cylinder at different incidence angles

机译:质量比和弹簧刚度对方形气缸在不同入射角下流动引起的振动的影响

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摘要

This paper presents a numerical study of the effect of spring stiffness and mass ratio on flow-induced vibration (FIV) of a square cylinder placed at four different incidence angles: alpha = 0 degrees, 10 degrees, 22.5 degrees, 45 degrees. The FIV is dominated by vortex-induced vibration (VIV), while another common form of FIV, galloping, is only found at alpha = 0 degrees. A period-doubled mode which has a half of the shedding frequency of a fix body frequency component is found in all incidence angles except 0 degrees. For these cases of alpha = 22.5 degrees, 45 degrees, there exists a limiting mass ratio beyond which period-doubled does not exist. However, all mass ratio has a period-doubled mode at alpha = 10 degrees due to its high asymmetry. The parameter of effective elasticity k(eff1)*, combined by mass ratio and spring stiffness is introduced in this paper. For the period-double mode and galloping, another effective elasticity k(eff0.5)* related to half of the frequency of a fix body is needed. The results show that the different flow regimes is a function of the effective elasticity rather than the reduce velocity with the change of mass ratio and spring stiffness. By using the effective elasticity, the limited mass ratio for occurrence of galloping can be determined.
机译:本文提供了数值研究,研究了弹簧刚度和质量比对放置在四个不同入射角(α= 0度,10度,22.5度,45度)的方形圆柱体的流致振动(FIV)的影响。 FIV由涡激振动(VIV)支配,而FIV的另一种常见形式是舞动,仅出现在α= 0度处。在除0度以外的所有入射角中都发现了具有固定体频率分量的脱落频率的一半的倍频模式。对于α= 22.5度,45度的这些情况,存在极限质量比,超过该极限时,将不存在两倍的周期。但是,由于其高不对称性,所有质量比在alpha = 10度时都具有周期加倍模式。介绍了质量比和弹簧刚度相结合的有效弹性系数k(eff1)*。对于周期倍频模式和舞动,需要另一个与固定体频率一半有关的有效弹性k(eff0.5)*。结果表明,不同的流态是有效弹性的函数,而不是随质量比和弹簧刚度的变化而降低的速度。通过使用有效弹性,可以确定发生舞动的有限质量比。

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