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A hybrid actuator disc - full rotor CFD methodology for modelling the effects of wind turbine wake interactions on performance

机译:混合动力执行器盘 - 全转子CFD方法,用于模拟风力涡轮机尾流相互作用对性能的影响

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摘要

The performance of individual wind turbines is crucial for maximum energy yield, however, their performance is often reduced when turbines are placed together in an array. The wake produced by the rotors interacts with downstream turbines, resulting in a reduction in power output. In this paper, we demonstrate a new and faster modelling technique which combines actuator disc theory, modelled using wind tunnel validated Computational Fluid Dynamics (CFD), and integrated into full rotor CFD simulations. This novel hybrid of techniques results in the ability to analyse performance when simulating various array layouts more rapidly and accurately than using either method on its own. It is shown that there is a significant power reduction from a downstream turbine that is subjected to the wake of an upstream turbine, and that this is due to both a reduction in power in the wind and also due to changes in the aerodynamics. Analysis of static pressure along the blade showed that as a result of wake interactions, a large reduction in the suction peak along the leading edge reduced the lift generated by the rotor and so reduced the torque production and the ability for the blade to extract energy from the wind.
机译:单个风力涡轮机的性能对于最大的发电量至关重要,但是,当风力涡轮机以阵列形式放置在一起时,其性能通常会降低。转子产生的尾流与下游涡轮相互作用,导致功率输出降低。在本文中,我们演示了一种结合了执行器圆盘理论,使用风洞验证的计算流体动力学(CFD)进行建模并集成到全转子CFD仿真中的新的更快的建模技术。这种新颖的技术组合比单独使用任何一种方法都能更快,更准确地模拟各种阵列布局,从而能够分析性能。已经显示,来自下游涡轮的功率显着降低,这受到上游涡轮的尾流的影响,这是由于风中功率的降低以及空气动力学的变化。沿叶片静压力的分析表明,由于尾流相互作用,沿前缘的吸力峰大幅降低,从而降低了转子产生的升力,从而降低了扭矩产生和叶片从中提取能量的能力。风。

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