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ENHANCED ROTATING NONLINEAR ENERGY SINK

机译:增强旋转非线性能量水槽

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摘要

An enhanced rotating nonlinear energy sink (NES) is numerically investigated in this study. The rotating NES in the literature is coupled with the associated linear structure by its nonlinear inertial coupling through a rigid arm that couples the rotating NES mass with the structure. Here, the coupling arm is assumed to be elastic. Consequently, the NES mass rotates about a fixed vertical axis and allowed to oscillate along the coupling arm in a radial direction. According to this modification, the rotating NES dissipates the transferred energy from the associated structure through its angular and radial viscous damping. Therefore, the modified rotating NES by elastic arm is found to absorb and dissipate more energy than the old one for a wide range of initial input energies induced into the associated linear structure. The arm length and the angular damping coefficient of the old rotating NES are optimized first by assuming a rigid coupling arm and later the stiffness and the damping coefficients in the radial direction are optimized accordingly. The obtained numerical results have shown a significant improvement in the rotating NES performance when the NES is allowed to oscillate through the coupling arm by a linear coupling restoring spring rather than locking the NES to a rigid arm.
机译:在本研究中有数值研究了增强的旋转非线性能量水槽(NES)。文献中的旋转NE通过其非线性惯性耦合通过其具有通过刚性臂与结构连接的刚性臂的非线性惯性耦合。这里,假设联接臂是弹性的。因此,NES质量围绕固定垂直轴旋转,并沿径向沿耦合臂振荡。根据该改变,旋转NE通过其角度和径向粘性阻尼散发来自相关结构的转移能量。因此,发现由弹性臂的改进的旋转网格吸收和耗散比旧的能量更多的能量,用于广泛的初始输入能量被引起到相关的线性结构中。首先通过假设刚性联接臂和稍后的刚度和径向中的阻尼系数来优化旧旋转NE的臂长度和角度阻尼系数。当允许NES通过耦合臂通过线性连接恢复弹簧而不是将NE锁定到刚性臂时,所获得的数值结果示出了旋转NES性能的显着改善。

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