Dual mass system for enhancing energy extraction from Vortex-Induced Vibrations of a circular cylinder

J. Xu-Xu, A. Barrero-Gil, A. Velazquez
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引用次数: 19

Abstract

In this paper, a theoretical study is presented concerning power extraction via the Vortex-Induced-Vibration (VIV) of a circular cylinder in a dual-mass configuration. The dual mass system is modeled as a simplified two-degrees-of-freedom mechanical system where fluid forces on the circular cylinder are taken out of experimental data from forced vibration tests. It is shown that power extraction can be optimized in certain reconfiguration scenarios if dual mass parameters (i.e.: secondary mass and stiffness between masses) are chosen appropriately. More specifically, system behavior is characterized as a function of the governing parameters, and performance charts are presented that could be used for parameter selection purposes in an engineering environment. Limitations and benefits of the redesigning with respect to the absence of the dual-mass is also presented.

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提高圆柱涡激振动能量提取的双质量系统
本文对双质量结构下圆柱涡激振动抽能问题进行了理论研究。双质量系统被建模为一个简化的二自由度机械系统,其中圆柱上的流体力是从强迫振动试验的实验数据中提取的。结果表明,适当选择双质量参数(即二次质量和质量间刚度)可以优化在某些重构场景下的功率提取。更具体地说,系统行为被描述为控制参数的函数,并且性能图表可以用于工程环境中参数选择的目的。本文还介绍了在双质量缺失的情况下重新设计的局限性和优点。
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