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UNSTEADY FLOW ANALYSIS OF THE VERTICAL AXIS CROSS-FLOW WIND TURBINE

机译:垂直轴贯流风轮机非定常流动分析

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摘要

Flow through the vertical axis cross-flow wind turbine was analyzed using computational fluid dynamics (CFD) to clarify current aerodynamic issues and to propose an improved design configuration for achieving better performance. The computed torque coefficients and power coefficients of a reference cross-flow wind turbine runner were compared with the experimental results. Flow around each blade of the turbine runner was then investigated based on the computed flow results. As a countermeasure to the issues found, a new wind turbine design was devised which has two guide vanes point-symmetrically arranged outside the turbine runner. It was experimentally shown that this improved design with the guide vanes increased turbine efficiency. However, performance predictions by CFD lack sufficient accuracy in the case of the turbine runner with the guide vanes, where complexity and unsteadiness prevail over the entire flow fields.
机译:使用计算流体动力学(CFD)对通过垂直轴错流风力涡轮机的流量进行了分析,以阐明当前的空气动力学问题并提出一种改进的设计配置,以实现更好的性能。将参考横流式风力涡轮机转轮的计算扭矩系数和功率系数与实验结果进行了比较。然后,根据计算得出的流量结果研究涡轮机转轮每个叶片周围的流量。作为发现的问题的对策,设计了一种新的风力涡轮机设计,其具有两个点对称地布置在涡轮机转轮外部的导向叶片。实验表明,这种带有导向叶片的改进设计提高了涡轮效率。但是,对于带有导向叶片的涡轮转子,CFD的性能预测缺乏足够的准确性,在这种情况下,复杂性和不稳定性在整个流场中普遍存在。

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