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FATIGUE LIFE ANALYSIS OF OFFSHORE WIND TURBINE SUPPORT STRUCTURES IN AN OFFSHORE WIND FARM

机译:海上风电场海上风力涡轮机支护结构疲劳寿命分析

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This study evaluated, by time-domain simulations, the fatigue lives of several jacket support structures for 4 MW wind turbines distributed throughout an offshore wind farm off Taiwan's west coast. An in-house RANS-based wind farm analysis tool, WiFa3D, has been developed to determine the effects of the wind turbine wake behaviour on the flow fields through wind farm clusters. To reduce computational cost, WiFa3D employs actuator disk models to simulate the body forces imposed on the flow field by the target wind turbines, where the actuator disk is defined by the swept region of the rotor in space, and a body force distribution representing the aerodynamic characteristics of the rotor is assigned within this virtual disk. Simulations were performed for a range of environmental conditions, which were then combined with preliminary site survey metocean data to produce a long-term statistical environment. The short-term environmental loads on the wind turbine rotors were calculated by an unsteady blade element momentum (BEM) model of the target 4 MW wind turbines. The fatigue assessment of the jacket support structure was then conducted by applying the Rainflow Counting scheme on the hot spot stresses variations, as read-out from Finite Element results, and by employing appropriate SN curves. The fatigue lives of several wind turbine support structures taken at various locations in the wind farm showed significant variations with the preliminary design condition that assumed a single wind turbine without wake disturbance from other units.
机译:该研究通过时域模拟评估了几个夹克支撑结构的疲劳,用于4兆瓦风力涡轮机分布在台湾西海岸的海上风电场。已经开发了一个内部RAN基于RANS的风电场分析工具WIFA3D,以确定风力涡轮机行为通过风力农场群集流场的影响。为了降低计算成本,WiFA3D采用执行器盘模型来模拟由目标风力涡轮机模拟在流场上施加在流场上的体力,其中致动盘由空间中转子的扫描区域和表示空气动力学的体力分布限定转子的特性被分配在此虚拟磁盘中。对一系列环境条件进行了模拟,然后将其与初步现场调查成群数据组合以产生长期统计环境。风力涡轮机转子上的短期环境载荷由目标4 MW风力涡轮机的不稳定叶片元件动量(BEM)模型计算。然后通过将雨流程计数方案施加在热点应力变化上,作为从有限元结果的读出,以及采用适当的SN曲线来进行夹套支撑结构的疲劳评估。在风电场的各个位置处拍摄的几个风力涡轮机支撑结构的疲劳寿命显示出具有初步设计条件的显着变化,该初步设计条件假设单个风力涡轮机,没有其他单元的唤醒扰动。

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