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首页> 外文期刊>Journal of marine science and technology >Improvement in capacity factor and fatigue assessment of VLMOS for wind power generation based on navigation simulation
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Improvement in capacity factor and fatigue assessment of VLMOS for wind power generation based on navigation simulation

机译:基于导航仿真的风力发电用VLMOS容量因子的改进和疲劳评估

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The very large mobile offshore structure (VLMOS) for wind power generation is one example of challenging future technologies to create a new backbone of energy resource of our country. The National Institute for Environmental Studies Japan has been studying this concept and found that increasing the capacity factor and reducing the weight of the structure are keys to make this concept successful. We investigated the navigation logic to improve the capacity factor and performed a fatigue assessment to ensure the structural safety of light weight design. Taking the knowledge on the seasonal weather condition in the Pacific Ocean into consideration, improved strategy of the VLMOS navigation for maximizing the generating power is proposed. Navigation simulations show that it is easy to achieve more than 40% capacity factor and to escape from high seas. Using wind and wave data obtained from the navigation simulations, an assessment of the fatigue damage has been performed. It is stated that the structure has enough fatigue strength for a 100 years of operation even if wind turbines get more than 40% of the capacity factor.
机译:用于风力发电的超大型移动式海上结构(VLMOS)是挑战未来技术以创建我国能源新骨干的一个例子。日本国立环境研究所一直在研究这个概念,并发现增加容量系数和减轻结构重量是使这个概念成功的关键。我们研究了导航逻辑以提高容量系数,并进行了疲劳评估以确保轻量化设计的结构安全性。考虑到太平洋地区季节性气候条件的知识,提出了一种VLMOS导航的改进策略,以最大化发电量。导航仿真表明,很容易达到40%以上的容量系数并从公海中逃脱。使用从导航模拟获得的风浪数据,对疲劳损伤进行了评估。据指出,即使风力涡轮机获得超过40%的容量系数,该结构仍具有足够的疲劳强度,可连续运行100年。

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