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Impact of the buoy geometry on power absorption of a point absorber with a cylindrical buoy under motion constraint

机译:浮标几何对运动约束下圆柱浮标对点吸收器功率的影响

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摘要

In this work, we studied the impact of the buoy geometry on power absorption of a point absorber consisting of a cylindrical buoy. The displacement volume of the buoy is fixed while the radius to draft ratio is adopted to completely define the buoy geometry. A motion constraint that prevents the buoy from jumping out of or being submerged by the water is applied so that the absorbed power is restrained at a reasonable range. The maximum power absorption ability under reactive control has been attained, and the most appropriate buoy geometry has been identified. Passive control is also investigated to find the possible condition where it can be used as an alternative to active control. Results show that the maximum absorbed power approaches the Budal limit at low wave frequencies, and gradually departs from this limit with the increasing wave frequency. The most attractive radius to draft ratio, which shows more absorbed power and wider bandwidth, is around 1.0 and decreases with the increasing wave amplitude. At high wave frequencies, the absorbed power is identically affected by the motion constraint for both passive and reactive control, hence passive control may be an alternative to reactive control in this condition due to simpler implementation.
机译:在这项工作中,我们研究了浮标几何形状对由圆柱形浮标组成的点吸收器的功率吸收的影响。浮标的位移量是固定的,而采用半径以完全定义浮标几何形状。施加防止浮标从水跳出或被水浸没的运动约束,使得吸收的功率在合理的范围内受到限制。已经达到了反应控制下的最大功耗能力,并且已经确定了最合适的浮标几何形状。还研究了被动控制,以找到可能的状态,可以用作主动控制的替代方案。结果表明,最大吸收功率在低波峰处接近趋势极限,并逐渐地从增加波频率脱离该极限。牵引比率最具吸引力的半径,显示更多吸收功率和更宽的带宽,大约为1.0并随着波幅的增加而减小。在高波峰处,吸收功率与被动和无反应控制的运动约束相同影响,因此被动控制可以是由于实施方案更简单而在该条件下的反应控制的替代。

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  • 来源
    《Oceanographic Literature Review》 |2021年第7期|1608-1608|共1页
  • 作者

    J. Wu; C. Qian; Z. Ni; S. Zheng;

  • 作者单位

    School of Mechanical Engineering Southeast University Nanjing Jiangsu 211189 China;

    School of Mechanical Engineering Southeast University Nanjing Jiangsu 211189 China;

    School of Mechanical Engineering Southeast University Nanjing Jiangsu 211189 China;

    School of Mechanical Engineering Southeast University Nanjing Jiangsu 211189 China;

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  • 正文语种 eng
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