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Dynamics Analysis of Energy Absorbing Device Based On Damped Dynamics Vibration Absorber

机译:基于阻尼动力学振动吸收器的能量吸收装置动力学分析

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Nowadays, absorbing energy from vibration is one of the most promising technologies. In general, the vibrations may be very large, such as the vibrations of tall buildings, large flexible bridges, and ocean platform and so on in some environmental loading. With the global concern on energy and environmental issues, energy absorbing from large-scale vibrations for structural health monitoring purposes is more attractive and becomes a research frontier. A type of damped dynamics vibration energy absorber, where two masses are connected in series with the energy transducer and spring, is built and analyzed in this paper. The relationships among electrical damping ratio, excitation frequency ratio and dimensionless power are analyzed in frequency domain. The optimal parameters for maximizing the power output are discussed in analytical form while taking the parasitic mechanical damping of the system into account. In addition, the numerical simulations in time domain are calculated. The results indicate that when the system is excited by the larger peak of local optimal excitation frequency, more power can be obtained. It is helpful for design of energy absorber device.
机译:如今,从振动吸收能量是最有前途的技术之一。通常,振动可能非常大,例如高层建筑的振动,大柔性桥梁和海洋平台等一些环境负荷。随着全球对能源和环境问题的关注,从大规模振动的能量吸收结构健康监测目的更具吸引力,成为一名研究前沿。在本文中,构建和分析了一种湿润的动力学振动能量吸收器,其中两个质量与能量传感器和弹簧串联连接。在频域中分析了电阻率,激发频率比和无量纲功率之间的关系。以分析形式讨论用于最大化功率输出的最佳参数,同时考虑系统的寄生机械阻尼。另外,计算时域中的数值模拟。结果表明,当通过局部最佳激励频率的较大峰值激发系统时,可以获得更多功率。它有助于设计能量吸收器装置。

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