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Energy harvesting from wind-induced bridge vibrations via electromagnetic transduction

机译:通过电磁换能从风致桥梁振动中收集能量

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摘要

Energy harvesting from wind-induced vibrations of long-span bridges through electromagnetic devices is herein addressed. A coupled model, describing the bridge structure excited by aeroelastic wind forces and equipped with harvesting devices mounted along the bridge girder, is derived by reducing bridge dynamics via a modal analysis. The model is employed to maximise the harvested power with respect to the stiffness and the electromagnetic damping parameter of the harvesting devices, depending on the characteristics of the approaching wind flow. Numerical results obtained in the case of a bridge-like structure similar to the Great Belt East Bridge are presented and discussed, showing model soundness and effectiveness. The influence of the dynamical coupling among principal structure and harvesting devices on the harvesting process is investigated. Moreover, in order to overcome possible feasibility drawbacks related to a real-time adjustment of harvester parameters, a simplified tuning procedure is proposed, resulting effective in a wide wind-speed range. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文讨论了通过电磁装置从大跨度桥梁的风致振动中收集能量的方法。通过模态分析降低桥梁动力,可以得出耦合模型,该模型描述了由气动弹性力激发的桥梁结构,并装有沿桥梁梁安装的收割装置。根据接近的气流的特性,使用该模型来最大化相对于采集设备的刚度和电磁阻尼参数的采集功率。给出并讨论了在类似于大皮带东桥的类似桥梁结构的情况下获得的数值结果,表明了模型的可靠性和有效性。研究了主体结构和收割装置之间的动力耦合对收割过程的影响。而且,为了克服与实时调节收割机参数有关的可能的可行性缺陷,提出了简化的调节程序,从而在宽的风速范围内有效。 (C)2016 Elsevier Ltd.保留所有权利。

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