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首页> 外文期刊>International Journal of Fluid Power >DESIGN AND EXPERIMENTAL VALIDATION OF HYDRAULIC YAW SYSTEM FOR MULTI MW WIND TURBINE
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DESIGN AND EXPERIMENTAL VALIDATION OF HYDRAULIC YAW SYSTEM FOR MULTI MW WIND TURBINE

机译:兆瓦级风轮机液压偏航系统的设计与试验验证

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摘要

To comply with the increasing demands for life time and reliability of wind turbines as these grow in size, new measures needs to be taken in the design of wind turbines and components hereof. One critical point is the initial testing of the components and systems before they are implemented in an actual turbine. Full scale hardware testing is both extremely expensive and time consuming, and so the wind turbine industry moves more towards simulations when testing. In order to meet these demands it is necessary to use valid system models of in order to introduce new technologies to the wind turbine market. A hydraulic yaw system is such a new technology, and so a mathematical model of the full scale system and test rig system is derived and compared to measurements from the system. This is done in order to have a validated model, which wind turbine manufacturers may use for test in their simulation environment. The model and the test rig are tested against different design load cases and the results are compared. The experiments show that the model is valid for comparing the overall dynamics of the hydraulic yaw system. Based on the results it is concluded that the model derived is suitable for testing of the dynamic behavior in wind turbine manufacturer's full scale aero elastic code.
机译:为了随着风力涡轮机尺寸的增加而对其寿命和可靠性的不断增长的需求,在风力涡轮机及其部件的设计中需要采取新的措施。一个关键点是组件和系统在实际涡轮机中实施之前的初始测试。全面的硬件测试非常昂贵且耗时,因此,风力涡轮机行业在测试时会更多地转向仿真。为了满足这些需求,必须使用有效的系统模型,以便将新技术引入风力涡轮机市场。液压偏航系统是一种新技术,因此可以得出满量程系统和试验台系统的数学模型,并将其与系统的测量结果进行比较。这样做是为了获得经过验证的模型,风力涡轮机制造商可以使用该模型在其仿真环境中进行测试。针对不同的设计载荷工况对模型和测试台进行了测试,并比较了结果。实验表明,该模型对于比较液压偏航系统的整体动力学是有效的。根据结果​​得出的结论是,导出的模型适用于测试风力涡轮机制造商的完整航空弹性代码中的动态行为。

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