Coupled mooring analysis for floating wave energy converters using CFD: Formulation and validation

Johannes Palm , Claes Eskilsson , Guilherme Moura Paredes , Lars Bergdahl
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引用次数: 101

Abstract

Floating wave energy converters (WECs) operating in the resonance region are strongly affected by non-linearities arising from the interaction between the waves, the WEC motion and the mooring restraints. To compute the restrained WEC motion thus requires a method which readily accounts for these effects. This paper presents a method for coupled mooring analysis using a two-phase Navier–Stokes (VOF–RANS) model and a high-order finite element model of mooring cables. The method is validated against experimental measurements of a cylindrical buoy in regular waves, slack-moored with three catenary mooring cables. There is overall a good agreement between experimental and computational results with respect to buoy motions and mooring forces. Most importantly, the coupled numerical model accurately recreates the strong wave height dependence of the response amplitude operators seen in the experiments.

基于CFD的浮动波能转换器耦合系泊分析:公式与验证
在共振区域工作的浮波能量转换器(WECs)受到波浪、WEC运动和系泊约束之间相互作用产生的非线性的强烈影响。因此,计算受约束的WEC运动需要一种容易解释这些影响的方法。本文提出了一种采用两相Navier-Stokes (VOF-RANS)模型和系泊索高阶有限元模型进行耦合系泊分析的方法。用三根悬链线系泊缆索对一个圆柱形浮标在规则波浪中的实验测量结果进行了验证。在浮筒运动和系泊力方面,实验结果与计算结果总体上吻合较好。最重要的是,耦合数值模型准确地再现了实验中看到的响应振幅算子的强波高依赖性。
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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