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Vortex-induced vibrations of a flexible cylinder at large inclination angle

机译:大倾角下柔性圆柱体的涡激振动

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The free vibrations of a flexible circular cylinder inclined at 80. within a uniform current are investigated by means of direct numerical simulation, at Reynolds number 500 based on the body diameter and inflow velocity. In spite of the large inclination angle, the cylinder exhibits regular in-line and cross-flow vibrations excited by the flow through the lock-in mechanism, i.e. synchronization of body motion and vortex formation. A profound reconfiguration of the wake is observed compared with the stationary body case. The vortex-induced vibrations are found to occur under parallel, but also oblique vortex shedding where the spanwise wavenumbers of the wake and structural response coincide. The shedding angle and frequency increase with the spanwise wavenumber. The cylinder vibrations and fluid forces present a persistent spanwise asymmetry which relates to the asymmetry of the local current relative to the body axis, owing to its in-line bending. In particular, the asymmetrical trend of flow-body energy transfer results in a monotonic orientation of the structural waves. Clockwise and counter-clockwise figure eight orbits of the body alternate along the span, but the latter are found to be more favourable to structure excitation. Additional simulations at normal incidence highlight a dramatic deviation from the independence principle, which states that the system behaviour is essentially driven by the normal component of the inflow velocity.
机译:通过直接数值模拟,以雷诺数500为基础,基于体径和流入速度,研究了均匀电流下倾斜80度的柔性圆柱体的自由振动。尽管倾角很大,但汽缸仍表现出规则的管道内和横流振动,这些振动是由通过锁定机构的流动所激发的,即,人体运动和漩涡形成的同步。与固定车身相比,观察到了尾流的深刻重构。发现涡流诱发的振动在平行的情况下发生,但在尾流的翼展波数与结构响应重合的地方也发生了斜向涡旋脱落。脱落角和频率随展向波数增加。汽缸的振动和流体力呈现持续的展向不对称性,这与局部电流相对于体轴的不对称性有关,归因于其轴向弯曲。特别地,流体能量传递的不对称趋势导致结构波的单调取向。物体的顺时针和逆时针八字形轨道沿跨度交替,但发现后者更有利于结构激发。在法向入射时的其他模拟突出显示了与独立性原理的显着偏差,独立性原理指出,系统行为本质上是由流入速度的法向分量驱动的。

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