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Modelling and empirical development of an anti/de-icing approach for wind turbine blades through superposition of different types of vibration

机译:通过叠加不同类型的振动为风力涡轮机叶片提供除冰/除冰方法的建模和经验开发

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The generation of green, safe and inexpensive energy by wind turbines is often decreased or interrupted in severe climate areas during cold weather. When the blades are even partially covered by different types of ice, their efficiency drops suddenly due to degradation of the blade profile from the ideal. The present study presents a new approach using ultrasonic guided waves as an anti/de-icing technique supplemented by low-frequency vibrations to effect shedding of the ice from the turbine blades. The study consists of a series of steps including initial theoretical studies and finite element simulation of representative plates and turbine blades, followed by a number of experimental validations concluded by tests of the complete approach in an icing wind tunnel. The results show the efficacy of the developed approach in tackling the different types of ice which can form on the blades, using very low power compared to available thermal techniques. (C) 2016 Elsevier B.V. All rights reserved.
机译:在寒冷的天气里,风力涡轮机所产生的绿色,安全和廉价的能源通常会在严酷的气候地区减少或中断。当叶片甚至被不同类型的冰部分覆盖时,由于叶片轮廓从理想状态降低,其效率突然下降。本研究提出了一种新方法,该方法使用超声波作为防冰/除冰技术,并辅以低频振动,以使冰从涡轮叶片上脱落。这项研究包括一系列步骤,包括初始理论研究和代表性板和涡轮机叶片的有限元模拟,然后通过对结冰风洞的完整方法进行测试得出结论,进行了许多实验验证。结果表明,与可用的热力技术相比,使用非常低的功率,开发的方法可有效解决叶片上可能形成的不同类型的冰。 (C)2016 Elsevier B.V.保留所有权利。

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