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The tuned mass-damper-inerter for harmonic vibrations suppression, attached mass reduction, and energy harvesting

机译:经调谐的质量阻尼器-惯性阻尼器,用于抑制谐波振动,减少附加质量并收集能量

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In this paper the tuned mass-damper-inerter (TMDI) is considered for passive vibration control and energy harvesting in harmonically excited structures. The TMDI couples the classical tuned mass-damper (TMD) with a grounded inerter: a two-terminal linear device resisting the relative acceleration of its terminals by a constant of proportionality termed inertance. In this manner, the TMD is endowed with additional inertia, beyond the one offered by the attached mass, without any substantial increase to the overall weight. Closed-form analytical expressions for optimal TMDI parameters, stiffness and damping, given attached mass and inertance are derived by application of Den Hartog's tuning approach to suppress the response amplitude of force and base-acceleration excited single-degree-of-freedom structures. It is analytically shown that the TMDI is more effective from a same mass/weight TMD to suppress vibrations close to the natural frequency of the uncontrolled structure, while it is more robust to detuning effects. Moreover, it is shown that the mass amplification effect of the inerter achieves significant weight reduction for a target/predefined level of vibration suppression in a performance-based oriented design approach compared to the classical TMD. Lastly, the potential of using the TMDI for energy harvesting is explored by substituting the dissipative damper with an electromagnetic motor and assuming that the inertance can vary through the use of a flywheel-based inerter device. It is analytically shown that by reducing the inertance, treated as a mass/inertia-related design parameter not considered in conventional TMD-based energy harvesters, the available power for electric generation increases for fixed attached mass/weight, electromechanical damping, and stiffness properties.
机译:在本文中,调谐质量阻尼器-惯性器(TMDI)被考虑用于谐波激励结构中的被动振动控制和能量收集。 TMDI将经典的调谐质量阻尼器(TMD)与接地的惯性耦合器耦合:这是一种两端子线性装置,可通过称为惯性的比例常数来抵抗其端子的相对加速度。以这种方式,TMD被赋予了附加的惯性,超出了附加质量所提供的惯性,而总重量却没有任何实质性的增加。在给定附加质量和惯性的情况下,通过应用Den Hartog的调整方法来抑制力和基础加速度激励的单自由度结构的响应,得出最佳TMDI参数,刚度和阻尼的闭式分析表达式。分析表明,在相同质量/重量的TMD情况下,TMDI可以更有效地抑制接近不受控制结构固有频率的振动,同时对失谐效果更稳定。此外,表明与传统的TMD相比,在基于性能的定向设计方法中,对于目标/预定义的振动抑制水平,惰轮的质量放大效果可显着降低重量。最后,通过用电磁马达代替耗散阻尼器并假设惯性可以通过使用基于飞轮的惯性装置来改变,来探索将TMDI用于能量收集的潜力。分析表明,通过减少惯性,将惯性视为与基于TMD的能量收集器不考虑的质量/惯性相关的设计参数,固定的质量/重量,机电阻尼和刚度属性的固定可用于发电的功率增加。

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