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WHTO: A methodology of calculating the energy extraction of wave energy convertors based on wave height reduction

机译:WHTO:一种基于波高降低的波能转换器能量提取计算方法

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Wave energy has significant worldwide exploitable resource and its exploitation has attracted renewable energy investigator' attention. Great progress on calculating device performance has been made by means of theoretical, numerical and model tests. This paper presents a method of calculating the energy extraction of a wave energy converter (WEC) based on Wave Height Take-off (WHTO). The method provides a means to improve the capture efficiency of designs, including demonstrating how well different kinds of WEC are optimized for certain wave conditions. Numerical simulations of a heaving buoy and a bottom-hinged pendulum in a 2D wave flume with different damping types (linear and nonlinear) are presented. The results show that the difference between the calculated energy extraction from the wave height reduction and from the model power take-off (PTO) was not significant in a 2D flume. Physical model tests were conducted using a simplified PTO consisting of a system of lifting weights, used to measure the energy extraction directly. Based on both numerical and physical model analyses, the article defines WHTO, which is equivalent to energy extracted by PTO, but determined without taking direct measurements. This paper aims to promote and validate the concept of the WHTO. (C) 2019 Elsevier Ltd. All rights reserved.
机译:波浪能在世界范围内具有重要的可利用资源,其利用已引起可再生能源研究人员的注意。通过理论,数值和模型测试,在计算设备性能方面取得了巨大进步。本文提出了一种基于波高起飞(WHTO)的波能转换器(WEC)能量提取的计算方法。该方法提供了一种提高设计捕获效率的方法,包括证明针对特定波浪条件优化不同种类的WEC的程度。提出了具有不同阻尼类型(线性和非线性)的二维波浪槽中的浮标和底摆的数值模拟。结果表明,在二维水槽中,从波高降低计算出的能量提取与从模型功率提取(PTO)计算出的能量提取之间的差异并不明显。物理模型测试是使用简化的PTO进行的,该PTO由举重系统组成,用于直接测量能量提取。基于数值模型和物理模型分析,本文定义了WHTO,它等效于PTO提取的能量,但无需直接测量即可确定。本文旨在促进和验证WHTO的概念。 (C)2019 Elsevier Ltd.保留所有权利。

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