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Validation of a CFD-based numerical wave tank model for the power production assessment of the wavestar ocean wave energy converter

机译:基于CFD的数值波箱模型对Wavestar海浪能量转换器发电量评估的验证

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CFD-based numerical wave tank (CNWT) models, are a useful tool for the analysis of wave energy converters (WECs). During the development of a CNWT, model validation is vital, to prove the accuracy of the numerical solution. This paper presents an extensive validation study of a CNWT model for the 1:5 scale Wavestar point-absorber device. The previous studies reported by Ransley et al. [1] and Windt et al. [2] are extended in this paper, by including cases in which the power-take off (PTO) system is included in the model. In this study, the PTO is represented as a linear spring-damper system, providing a good approximation to the full PTO dynamics. The spring stiffness and damping coefficients in the numerical PTO model are determined through a linear least squares fit of the experimental PTO position, velocity and force data. The numerical results for free surface elevation, PTO data (position, velocity, force), generated power and pressure on the WEC hull are shown to compare well with the experimental measurements. (C) 2019 Elsevier Ltd. All rights reserved.
机译:基于CFD的数值波浪储罐(CNWT)模型是分析波浪能转换器(WEC)的有用工具。在CNWT的开发过程中,模型验证对于证明数值解的准确性至关重要。本文对1:5比例Wavewave点吸收器装置的CNWT模型进行了广泛的验证研究。以前的研究由Ransley等报道。 [1]和Windt等。 [2]在本文中得到扩展,包括模型中包括了取力器(PTO)系统的情况。在这项研究中,PTO被表示为线性弹簧阻尼器系统,可以很好地近似于完整的PTO动态。 PTO数值模型中的弹簧刚度和阻尼系数是通过对PTO实验位置,速度和力数据进行线性最小二乘拟合确定的。显示的自由表面高程,PTO数据(位置,速度,力),WEC船体上产生的功率和压力的数值结果与实验测量值进行了比较。 (C)2019 Elsevier Ltd.保留所有权利。

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