波浪模式下WEC装置的水动力系数和波浪荷载

S. Olaya, J. Bourgeot, M. Benbouzid
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引用次数: 12

摘要

本文研究了一种波浪能转换器(WEC)的水动力参数计算,该转换器是由一个圆柱形浮标沿着由板和柱组成的部分淹没平台滑动组成的。基于康明斯公式的简单水动力时间依赖模型的开发特别需要计算参数。该模型旨在用于WEC控制目的。因此,提出了一种计算水动力系数和激振力的半解析方法。采用变量分离法和匹配特征函数展开法求解边值问题。然后得到每个子域的速度势的解析表达式。利用这些表达式可以计算水动力系数和激励力。给出了不同半径的浮标、柱和板的数值计算结果,并与已有的模型进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydrodynamic coefficients and wave loads for a WEC device in heaving mode
This paper deals with the hydrodynamic parameter computation of a Wave Energy Converter (WEC) that consists of a cylindrical buoy sliding along a partially submerged platform made up of a plate and a column. The computed parameters are particularly needed for the development of a simple hydrodynamic time-dependant model based on the Cummins formulation. This model is intended to be used for WEC control purposes. A semi-analytical approach is therefore proposed for the computation of the hydrodynamic coefficients and the excitation forces. The boundary value problem is solved using variable separation and matched eigenfunction expansion methods. Analytical expressions for the velocity potential are then obtained for each subdomain. Using afterwards these expressions enables the hydrodynamic coefficients and the excitation force to be computed. Numerical results are given for different radiuses of the buoy, column and plate and are compared with previously published models.
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