Dynamic Simulation of Wave Point Absorbers Connected to a Central Floating Platform

Thiago Saksanian Hallak, José Ferreira Gaspar, Carlos António Pancada Guedes Soares
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Abstract

AmAmong the challenges currently being faced by the wave energy industry, there are the ones related to the mathematical and numerical modelling of Wave Energy Converters. Because various levels of physical complexity are reflected in the dynamics of wave converters, the mathematical modelling of such systems usually comes up with nonlinear dynamic equations to be solved. The nonlinearities, however, may appear in many ways. In this paper, the nonlinear geometric constraints that arise naturally in hinged structures are investigated for floating multi-body systems including wave point absorbers. To achieve that, a method of constraint linearization is proposed and applied to a realistic case study. The method is based on generalized coordinates and generates a robust first-order dynamic matrix to characterize the multi-degrees of freedom hydrodynamic system. The simulation outputs the motion response for all floating bodies, as well as the constraining forces responses, among other parameters. The method requires knowledge of the geometries of the system but rather few assumptions, namely, to perform the linearization of constraints. The method is illustrated with a case study, where three wave point absorbers are concentrically attached to a Floating Offshore Wind Turbine platform with an onboard hydraulic Power-Take Off system.
中央浮式平台连接波点吸波器的动态仿真
在波浪能工业目前面临的挑战中,有一些与波浪能转换器的数学和数值建模有关。由于波转换器的动力学反映了不同层次的物理复杂性,因此对这类系统进行数学建模通常需要求解非线性动力学方程。然而,非线性可能以多种方式出现。本文研究了包含波点吸波器的浮动多体系统在铰链结构中自然产生的非线性几何约束。为了实现这一目标,提出了一种约束线性化方法,并将其应用于实际案例研究。该方法基于广义坐标,生成鲁棒的一阶动力矩阵来表征多自由度流体动力系统。仿真输出所有浮体的运动响应,以及约束力响应,以及其他参数。该方法需要系统的几何知识,但需要很少的假设,即执行约束的线性化。通过一个案例研究说明了该方法,其中三个波点吸收器同心连接到带有机载液压动力起飞系统的浮动海上风力涡轮机平台上。
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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