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CFD Studies of Wake Characteristics and Power Capture of Wind Turbines With Trailing Edge Flaps

机译:追逐边缘襟翼风力涡轮机尾瘤瘤的CFD研究

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摘要

Trailing edge flap (TEF) devices will change downstream wake development in wind farms comprising smart rotors, which in turn affect the performance of downstream wind turbines. To study the influence of TEFs on downstream wake development and power capture of wind turbines in wind farms, computational fluid dynamics (CFD) simulations using the three-dimensional rotor model are performed in this paper. The CFD software Fluent is adopted to simulate a wind farm with two tandem wind turbines with TEFs at rated and below rated turbulent wind conditions. Under the 11.4 m/s turbulent wind conditions, the results show that the deflection of the TEF increases the velocity deficit and reduces the wake width, making the wake more complicated. And the positive TEF angle has a greater influence on downstream wake than the negative TEF angle. Additionally, under the 9 m/s turbulent wind conditions, the total power of the two wind turbines increases by 6.5 & x0025; when the TEF angles are 6 & x00B0;.
机译:尾随襟翼(TEF)器件将在包含智能转子的风电场中的下游唤醒开发,这反过来影响下游风力涡轮机的性能。为研究TEFS对风电场中风涡轮机的下游唤醒开发和动力捕获的影响,本文采用了三维转子模型进行了计算流体动力学(CFD)模拟。采用CFD软件流畅,以模拟带有两个串联风力涡轮机的风电场,额定额定和低于额定湍流风的风能。在11.4米/秒的湍流风条件下,结果表明,TEF的偏转会增加速度缺口并减少唤醒宽度,使唤醒更加复杂。并且正Tef角度对下游唤醒的影响大于负角角度。另外,在9米/秒的湍流风条件下,两个风力涡轮机的总功率增加了6.5&x0025;当TEF角度为6&x00b0时;

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