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Reliability analysis for a spar-supported floating offshore wind turbine

机译:翼梁支撑的浮式海上风力发电机的可靠性分析

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The reliability analysis of a spar-supported floating offshore 5-MW wind turbine is the subject of this study. Environmental data from a selected site are employed in the numerical studies. Using time-domain simulations, the dynamic behavior of a coupled platform-turbine system is studied; statistics of tower and rotor loads as well as platform motions are estimated and critical combinations of wind speed and wave height identified. Long-term loads associated with a 50-year return period are estimated using statistical extrapolation based on loads derived from simulations. Inverse reliability procedures that seek appropriate fractile levels for underlying variables consistent with the target load return period are employed; these include use of (1) two-dimensional inverse first-order reliability method where extreme loads, conditional on wind speed and wave height random variables, are selected at median levels and (2) three-dimensional inverse first-order reliability method where variability in the environmental and load random variables is fully represented.
机译:本研究的主题是由梁支撑的海上5兆瓦风力涡轮机的可靠性分析。数值研究中使用了选定地点的环境数据。使用时域仿真,研究了平台-涡轮耦合系统的动力学行为。估算塔架和转子载荷以及平台运动的统计数据,并确定风速和波高的关键组合。使用基于模拟得出的负荷的统计外推法估算与50年回归期相关的长期负荷。采用反向可靠性程序,为与目标负荷返回期一致的基础变量寻找合适的易碎水平;其中包括(1)二维逆一阶可靠性方法,其中在风速和浪高随机变量的条件下,在中位水平选择极限载荷;以及(2)三维逆一阶可靠性方法,其中可变性在环境和负荷中随机变量得到了充分的体现。

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