首页> 外文会议>Structural Load amp; Fatigue on Floating Structures >NOVEL MOORING DESIGN OPTIONS FOR HIGH-INTENSITY TYPHOON CONDITIONS – AN INVESTIGATION FOR WAVE ENERGY IN CHINA
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NOVEL MOORING DESIGN OPTIONS FOR HIGH-INTENSITY TYPHOON CONDITIONS – AN INVESTIGATION FOR WAVE ENERGY IN CHINA

机译:高强度台风条件下的新型系泊设计方案–对中国波浪能的调查

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The industrialised and densely populated coastal regions in China are in search of local energy supplies in order to avoid expensive energy transmission from the West of China. Wave energy technology is considered as one of the possible solutions with a potential installed capacity of 13GW around China. However, typhoons are a major meteorological threat for China’s coastal regions with estimated damages of over 20bnRMB. Prediction, prevention and mitigation of typhoons have greatly improved and coastal regions at risk are readily identified.rnThis paper will outline the environmental load conditions that are faced by floating installations in the Chinese Sea. The paper assesses the feasibility of novel mooring solutions that aim to absorb energy during the most severe load conditions in order to reduce peak and fatigue loads. Their suitability for wave energy converters in high-intensity typhoon conditions is assessed by a fully-coupled hydrodynamic analysis. Initial modelling has been conducted in the time-domain employing a moored cylindrical buoy with six degrees of freedom. The mooring line properties have been chosen to be characteristic of the strongly nonlinear behaviour of novel mooring designs. The results show a reduction in peak loads along the entire length of the mooring line in comparison to standard rope mooring, whilst crucially not restricting the heave motion of the buoy. These initial results will inform the refinement and optimisation of the mooring design of floating installations for high-intensity typhoon conditions.
机译:中国的工业化和人口稠密的沿海地区正在寻找当地的能源供应,以避免昂贵的能源从中国西部转移。波浪能技术被认为是可能的解决方案之一,在中国潜在装机容量为13GW。但是,台风是中国沿海地区的主要气象威胁,估计造成的损失超过200亿元人民币。台风的预测,预防和缓解得到了极大改善,沿海地区容易被识别。本文将概述中国海中漂浮设施所面临的环境负荷条件。本文评估了新颖的系泊解决方案的可行性,该解决方案旨在在最恶劣的负载条件下吸收能量,以减少峰值负载和疲劳负载。通过全耦合流体动力学分析评估了它们在高强度台风条件下对波能转换器的适用性。已经在时域中使用具有六个自由度的系泊圆柱浮标进行了初始建模。选择系泊缆的特性是新颖系泊设计的强烈非线性行为的特征。结果表明,与标准绳索系泊相比,系泊缆整个长度上的峰值载荷有所降低,但至关重要的是不限制浮标的升沉运动。这些初步结果将为高强度台风条件下浮动装置的系泊设计提供优化和优化依据。

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