Hydrodynamic performance of concentric arrays of point absorbers

A. Sinha, D. Karmakar, C. Guedes Soares
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引用次数: 1

Abstract

The behaviour of arrays of 12 heaving point absorbers in concentric arrangements is numerically assessed in a frequency domain model. The floaters are attached to a central cylindrical bottom-mounted structure. Each point absorber is restricted to the heave mode and is assumed to have its own linear power take-off system consisting of an external damping coefficient enabling power extraction and a supplementary mass coefficient tuning the point absorber to the incoming waves. The external damping and supplementary mass coefficients are optimized to maximize the power absorption by each floater in the array, with a restriction on the total control force that can be applied on the floaters. Various concentric arrangements with different radii and number of concentric circles are analysed to determine the most efficient among them. Moreover, the influence of the presence of a central bottom-mounted pillar and the effect of change in its dimension and shape on the power absorption are also studied.
点吸波器同心阵列的水动力性能
在频域模型中对12个同心布置的升沉点吸波器阵列的性能进行了数值评价。漂浮物附着在一个中央圆柱形底部安装的结构上。每个点吸收体都被限制为升沉模式,并假设有自己的线性动力输出系统,该系统由一个外部阻尼系数和一个辅助质量系数组成,该系数使点吸收体能够吸收入射波。优化了外部阻尼和补充质量系数,以最大限度地提高阵列中每个漂浮物的功率吸收,并限制了可施加在漂浮物上的总控制力。分析了具有不同半径和同心圆数的各种同心圆布置,以确定其中最有效的布置。此外,还研究了中心底置柱的存在及其尺寸和形状变化对吸能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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