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The influence of biofouling on power capture and the fatigue life of mooring lines and power cables used in wave energy converters

机译:生物污染对波能线电力捕获的影响和波浪能转换器中使用的电力电缆的疲劳寿命

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This study presents an analysis of a Wave Energy Converter (WEC) system consisting of a buoy, a mooring system and a power cable connected to a hub. The investigated WEC system is currently under full-scale testing near Runde in Norway. The purpose of the study was to investigate the characteristics of the entire system, primarily with regard to energy performance and the fatigue life of the mooring lines and power cable, considering the effects of marine biofouling and its growth on the system's components. The energy performance of the system and the fatigue life of the mooring lines and the power cable were systematically studied via parameter variation analysis, considering different mooring configurations, biofouling conditions, and environmental loads (current and sea state conditions), among other factors. Hydrodynamic and structural response simulations were conducted in a coupled response analysis using the DNV-GL software SESAM. Energy performance analyses and stress-based rainflow counting fatigue calculations were performed separately using an in-house code. The results show that, for a WEC system which has been deployed for 25 years, biofouling can reduce the total power absorption by up to 10% and decrease the fatigue life of the mooring lines by approximately 20%.
机译:该研究介绍了由浮标,系泊系统和连接到轮毂的电力电缆组成的波能转换器(WEC)系统的分析。调查的WEC系统目前正在挪威Runde附近的全规模测试。研究的目的是研究整个系统的特点,主要考虑到船舶生物污染的影响和电力电缆的能量性能和疲劳寿命,以及对系统组件的影响。通过参数变化分析系统地研究了系统的能量性能和系泊线的疲劳寿命和电力电缆的疲劳寿命,考虑到不同的系泊配置,生物耦合条件和环境载荷(当前和海州条件)等因素。使用DNV-GL软件SESAM在耦合响应分析中进行流体动力学和结构响应模拟。能量性能分析和基于应力的雨流程计算疲劳计算使用内部代码分开进行。结果表明,对于已部署25年的WEC系统,生物污染可以将总功率吸收降低至10%,并将系泊线的疲劳寿命减少约20%。

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