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Experimental tests and CFD simulations of a horizontal wave flow turbine under the joint waves and currents

机译:在接合波和电流下水平波流涡轮机的实验测试和CFD模拟

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摘要

This paper focus on the comparison of traditional vertical-axis turbines and a newly proposed horizontal wave flow turbine. Firstly, the major design parameters of this new concept are presented. Then a series of experimental tests of a prototype in the towing tank have been performed to investigate its hydrodynamic performance. It is found that the highest energy conversion rate is about 24.83% and the average impeller rotation power also reaches its maximum value of 352 W among all the six design cases. In addition, the Computational Fluid Dynamics (CFD) simulations have been performed to investigate its hydrodynamic characteristics and energy harvesting efficiency under the combined action of waves and currents. The results also show that the amplitude of the turbine's thrust and torque moment fluctuations increase with increasing motion amplitude. Furthermore, the wave dynamics cause instantaneous fluctuations in the flow field distribution for both types and the horizontal wave flow turbine has a more stable flow field. The comparison of both types of turbine based on the CFD simulations show that the torque moment, thrust force, and lateral force coefficients of the horizontal wave flow turbine are approximately 1.2-1.5 greater than those of the vertical axis turbine. Therefore, the horizontal wave flow turbine shows better energy harvesting efficiency if compared with the traditional vertical one.
机译:本文侧重于传统垂直轴涡轮机的比较和新提出的水平波流涡轮机。首先,提出了这种新概念的主要设计参数。然后,已经进行了一系列原型的原型的实验测试,以研究其流体动力学性能。结果发现,最高能量转换率约为24.83%,平均叶轮旋转功率也达到其六种设计情况中的最大值352 W。此外,已经进行了计算流体动力学(CFD)模拟,以研究其在波浪和电流的组合作用下的流体动力学特性和能量收集效率。结果还表明,随着运动幅度的增加,涡轮推力和扭矩矩的幅度增加。此外,波动态导致两种类型的流场分布中的瞬时波动,并且水平波流涡轮机具有更稳定的流场。基于CFD模拟的两种类型的涡轮机的比较表明,水平波流涡轮机的扭矩矩,推力和横向力系数大约比垂直轴线涡轮机大约为1.2-1.5。因此,与传统的垂直一体相比,水平波流动涡轮机显示出更好的能量收集效率。

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  • 来源
    《Oceanographic Literature Review》 |2021年第9期|2107-2107|共1页
  • 作者

    Y. Cao; A. Liu; X. Yu;

  • 作者单位

    School of Naval Architecture and Marine Engineering University of New Orleans 2000 Lakeshore New Orleans. 70148 United States;

    School of Naval Architecture and Marine Engineering University of New Orleans 2000 Lakeshore New Orleans. 70148 United States;

    School of Naval Architecture and Marine Engineering University of New Orleans 2000 Lakeshore New Orleans. 70148 United States;

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  • 正文语种 eng
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