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Extreme turbulence control for wind turbines

机译:风力涡轮机的极端湍流控制

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The components of a wind turbine are designed to ensure that they can withstand the (fatigue and extreme) loads during their lifetime. To this end, the loads are analyzed using simulations under a large set of design conditions. One of the most demanding design condition, however, is operation under extreme turbulence conditions. For many turbines, this is a design-driving load case, as is the case with the InnWind 10-MW reference wind turbine. To present, reduction of loads during extreme turbulence using the wind turbine controller has not been considered explicitly. In this report, an extreme turbulence control algorithm is developed to actively reduce the ultimate loads on the main turbine components during operation in extreme turbulence conditions. The benefits of the algorithm are demonstrated in two test cases: with the InnWind 10-MW and InnWind 20-MW reference wind turbines.
机译:风力涡轮机的组件经过精心设计,以确保它们在使用寿命期间能够承受(疲劳和极端)负载。为此,在大量设计条件下使用仿真来分析载荷。然而,最苛刻的设计条件之一是在极端湍流条件下的操作。对于许多涡轮机而言,这是设计驱动的负载情况,与InnWind 10兆瓦参考风力涡轮机一样。目前,尚未明确考虑使用风力涡轮机控制器降低极端湍流期间的负荷。在此报告中,开发了一种极端湍流控制算法,以在极端湍流条件下运行期间主动降低主要涡轮机部件上的极限载荷。在两个测试案例中证明了该算法的优势:使用InnWind 10兆瓦和InnWind 20兆瓦参考风力涡轮机。

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