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Analytical performance assessment of a novel active mooring system for load reduction in marine energy converters

机译:一种新型主动系泊系统的分析性能评估,可降低船用能源转换器的负荷

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Reliability and storm survival of Marine Energy Converters are critical to their commercial development and deployment. The Intelligent Active Mooring System (IAMS) is a novel device intended to minimise extreme and fatigue loading in mooring lines through a non-linear load-extension curve that is variable in operation to adjust to the prevailing metocean conditions. An analytical model of LAMS, validated by physical model tests at the Dynamic Marine Component test facility at the University of Exeter, is used in a numerical simulation of the performance of IAMS as part of the mooring system of the South West Mooring Test Facility buoy. A 10 m length of IAMS can reduce the rms line tension in normal operating conditions by up to 21% and the peak line tension in storm conditions by up to 21% when compared to braided nylon mooring lines. Peak line tension reductions of over 50% can be achieved if a longer IAMS unit is used. The resulting mooring system can be optimised to give load reductions in a wide range of metocean conditions; while variable pre-tension could be used for tidal range compensation or to ease access for installation and maintenance. (C) 2016 Elsevier Ltd. All rights reserved.
机译:船用能源转换器的可靠性和风暴寿命对于其商业开发和部署至关重要。智能主动系泊系统(IAMS)是一种新颖的设备,旨在通过非线性载荷-延伸曲线来最大程度地减小系泊缆绳中的极端载荷和疲劳载荷,该曲线在操作中会发生变化,以适应当前的海洋状况。 LAMS的分析模型已通过埃克塞特大学(Exeter)动态海洋组件测试设施的物理模型测试验证,被用于IAMS性能的数值模拟中,作为西南系泊测试设施浮标系泊系统的一部分。与编织尼龙系泊缆相比,长度为10 m的IAMS可以在正常运行条件下将rms线张力降低多达21%,在风暴条件下将峰值线张力降低多达21%。如果使用更长的IAMS装置,可以使峰值线张力降低50%以上。可以优化所得的系泊系统,以在各种海洋条件下降低负荷;可变的预紧力可用于潮差补偿或简化安装和维护的通道。 (C)2016 Elsevier Ltd.保留所有权利。

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