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首页> 外文期刊>Journal of offshore mechanics and arctic engineering >Vivace (vortex Induced Vibration Aquatic Clean Energy): A Newconcept In Generation Of Cleanrnand Renewable Energy From Fluid Flow
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Vivace (vortex Induced Vibration Aquatic Clean Energy): A Newconcept In Generation Of Cleanrnand Renewable Energy From Fluid Flow

机译:Vivace(涡流诱发的振动水生清洁能源):流体流动产生清洁和可再生能源的新概念

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Any device aiming to harness the abundant clean and renewable energy from ocean and other water resources must have high energy density, be unobtrusive, have low maintenance, be robust, meet life cycle cost targets, and have a 10-20 year life. The vortex induced vibration aquatic clean energy (VIVACE) converter-invented by Bernitsas and Raghavan, patent pending through the University of Michigan-satisfies those criteria. It converts ocean/river current hydrokinetic energy to a usable form of energy such as electricity using VIV successfully and efficiently for the first time. VIVACE is based on the idea of maximizing rather than spoiling vortex shedding and exploiting rather than suppressing VIV. It introduces optimal damping for energy conversion while maintaining VIV over a broad range of vortex shedding synchronization. VIV occurs over very broad ranges of Reynolds (Re) number. Only three transition regions suppress VIV. Thus, even from currents as slow as 0.25 m/s, VIVACE can extract energy with high power conversion ratio making ocean/river current energy a more accessible and economically viable resource. In this paper, the underlying concepts of the VIVACE converter are discussed. The designs of the physical model and laboratory prototype are presented. A mathematical model is developed, and design particulars for a wide range of application scales are calculated. Experimental measurements on the laboratory prototype are reported in the sequel paper and used here for preliminary benchmarking.
机译:任何旨在利用海洋和其他水资源中丰富的清洁和可再生能源的设备,都必须具有高能量密度,不引人注目,维护成本低,坚固耐用,满足生命周期成本目标并具有10-20年的使用寿命。由密歇根大学申请专利的Bernitsas和Raghavan发明的涡激振动水生清洁能源(VIVACE)转换器满足了这些标准。首次成功利用VIV将海洋/河流当前的水动能转换为可用的能源形式,例如电力。 VIVACE基于最大化而不是破坏涡流脱落和利用而不是抑制VIV的思想。它为能量转换引入了最佳阻尼,同时在广泛的涡旋脱落同步范围内维持VIV。 VIV的雷诺数(Re)数范围很广。只有三个过渡区域抑制VIV。因此,即使从低至0.25 m / s的电流中,VIVACE仍可以以高功率转换比提取能量,从而使海/河电流能成为一种更易获得且经济上可行的资源。本文讨论了VIVACE转换器的基本概念。介绍了物理模型和实验室原型的设计。开发了数学模型,并计算了适用范围广泛的设计细节。在续篇中报道了实验室原型的实验测量结果,并将其用于初步基准测试。

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