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Lock-in study of two side-by-side cylinders of different diameters in close proximity in steady flow

机译:稳定流动中紧密相邻的两个直径不同的并排气缸的锁定研究

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摘要

Lock-in of the vortex-induced vibration of two side-by-side circular cylinders of different diameters (diameter ratio d/D=0.1) is investigated numerically. The cylinders are located in close proximity and free to oscillate in the cross-flow direction. The initial gap between the two cylinders is set the same as the small cylinder diameter (d). The mass ratios of both cylinders (m) are fixed to be 5 and the damping ratios are small enough to be negligible. Simulations are first carried out for two cases where the large-to-small-cylinder natural frequency ratio is 1. Case 1 is focused on the lock-in of the large cylinder and Case 2 is focused on the lock-in of the small cylinder, which is far narrower than that of the large cylinder. Then simulations are carried out at a natural frequency ratio (small-to-large-cylinder) of 0.1, where both cylinders are expected to lock on to their own natural frequencies (referred to be Case 3). The interference between the two cylinders under these conditions is investigated in detail. The widening of the lock-in range of the reduced velocities for the large cylinder in Case 1, the beating behavior of the small cylinder in its lock-in range in Case 2 and the dual lock-in behavior of the small cylinder during the simultaneous lock-in of both cylinders in Case 3 are some of the key findings of this study.
机译:数值研究了两个不同直径(直径比d / D = 0.1)的并排圆柱的涡流振动的锁定。气缸位置非常靠近,并且可以在横流方向上自由振动。两个气缸之间的初始间隙设置为与小气缸直径(d)相同。两个气缸的质量比(m)固定为5,阻尼比小到可以忽略不计。首先对两种情况进行仿真,其中大圆柱与小圆柱的固有频率比为1。案例1着重于大圆柱的锁定,而案例2着重于小圆柱的锁定。 ,这比大圆柱体要窄得多。然后,以0.1的固有频率比(小圆柱与大圆柱)进行仿真,其中两个圆柱都应锁定在各自的固有频率上(称为情况3)。详细研究了在这些条件下两个气缸之间的干涉。案例1中大气缸的降低速度的锁定范围的扩大,案例2中小气缸在其锁定范围内的拍打行为以及同时进行期间小气缸的双重锁定行为案例3中两个气瓶的锁定是这项研究的一些关键发现。

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