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Unimodal optimal passive electromechanical damping of elastic structures

机译:弹性结构的单峰最优无源机电阻尼

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In this paper, a new electromechanical damper is presented and used, made of a pendulum oscillating around an alternator axis and connected by a gear to the vibrating structure. In this way, the mechanical energy of the oscillating mass can be transformed into electrical energy to be dissipated when the alternator is branched on a resistor. This damping device is intrinsically non-linear, and the problem of the optimal parameters and of the best placement of this damper on the structure is studied. The optimality criterion chosen here is the maximum exponential time decay rate (ETDR) of the structural response. This criterion leads to new design formulas. The case of a bridge under construction is considered and the analytical results are compared with experimental ones, obtained on a mock-up made of a vertical tower connected to a free-end horizontal beam, to simulate the behavior of a cable-stayed bridge during the erection phase. Up to three electromechanical dampers are placed in order to study the multi-modal damping. The satisfactory agreement between the theoretical model and the experiments suggests that a multi-modal passive damping of electromagnetic type could be effective on lightweight flexible structures, when dampers are suitably placed.
机译:在本文中,提出并使用了一种新型的机电阻尼器,该阻尼器由围绕交流发电机轴线摆动的摆锤组成,并通过齿轮与振动结构相连。这样,当交流发电机在电阻器上分支时,振荡质量的机械能可以转换为电能。该阻尼装置本质上是非线性的,并且研​​究了该阻尼器在结构上的最佳参数和最佳放置的问题。此处选择的最佳标准是结构响应的最大指数时间衰减率(ETDR)。该标准导致了新的设计公式。考虑在建桥梁的情况,并将分析结果与实验结果进行比较,该结果是在垂直塔连接到自由端水平梁的模型上获得的,以模拟斜拉桥在运行过程中的行为。架设阶段。为了研究多模式阻尼,最多可放置三个机电阻尼器。理论模型与实验之间令人满意的一致性表明,在适当放置阻尼器的情况下,电磁类型的多模式被动阻尼对轻质柔性结构可能有效。

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