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VORTEX-INDUCED VIBRATION OF A SPRUNG RIGID CIRCULAR CYLINDER AUGMENTED WITH A NONLINEAR ENERGY SINK

机译:非线性能量沉增强的刚性刚圆柱圆柱的涡激振动。

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We study the nonlinear fluid-structure interaction of an elas-tically supported rigid circular cylinder in a laminar flow. Periodic shedding of counter-rotating vortices from either side of the cylinder results in vortex-induced vibration of the cylinder. We demonstrate the passive suppression of the limit cycle oscillation (ICO) of the cylinder with the use of an essentially nonlinear element, the nonlinear energy sink (NES). The computational study is performed at a Reynolds number (Re) of 100; Re is defined based on the cylinder diameter and inlet velocity. The varia-tiond multiscale residual-based stabilized finite-element method is used to compute approximate solutions of the incompressible Navier-Stokes equations. The NES is comprised of a small mass, an essentially nonlinear spring, and a linear damper. With appropriate values for the NES parameters, the coupled system of flow-cylinder-NES exhibits resonant interactions, resulting in targeted energy transfer (TET) from the flow via the cylinder to the NES, where the energy is dissipated by the linear damper. The NES interacts with the fluid via the cylinder by altering the phase relation between the lift force and the cylinder displacement; this brings about significant reduction in the LCO amplitude of the cylinder for several set of values of the NES parameters.
机译:我们研究了层流中弹性支撑的刚性圆柱的非线性流体-结构相互作用。从圆柱体的任一侧周期性产生反向旋转的涡流会导致圆柱体产生涡流引起的振动。我们演示了通过使用本质上为非线性的元素,即非线性能量吸收器(NES),来被动抑制气缸的极限循环振荡(ICO)。计算研究以雷诺数(Re)为100进行; Re是根据气缸直径和进气速度定义的。基于变分的多尺度残差稳定化有限元方法用于计算不可压缩的Navier-Stokes方程的近似解。 NES由较小的质量,基本上为非线性的弹簧和线性阻尼器组成。如果NES参数具有适当的值,则流-缸-NES的耦合系统会表现出共振相互作用,从而导致从目标流体通过缸到NES的目标能量转移(TET),在此能量通过线性阻尼器消散。 NES通过改变升力和气缸位移之间的相位关系,通过气缸与流体相互作用。对于NES参数的几组值,这将显着降低圆柱体的LCO幅度。

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