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Simulations of a rotor with active deformable trailing edge flaps in half-wake inflow: Comparison of EllipSys 3D with HAWC2

机译:在半尾流入中模拟具有主动可变形后缘襟翼的转子:Ellipsys 3D与HaWC2的比较

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摘要

Various research projects have focused on active aerodynamic load control of wind turbines using control devices on the blades, for example flaps. The aerodynamic load predictions of utilized aeroelastic codes have not yet been fully validated with full rotor CFD or experimental results. In this study, a comparison between aerodynamic predictions of the aeroelastic code HAWC2 and the Navier-Stokes code EllipSys3D for the NREL 5MW reference wind turbine rotor in a stiff configuration equipped with a deformable trailing edge flap is performed. A case where the half rotor plane experiences an inflow resembling the wake from an upstream wind turbine is investigated, which is appropriate for comparing the predictions of the two codes related to the abrupt aerodynamic response and the influence of the controllable flap. The trailing edge flap is actuated to alleviate the added loads from a non-uniform inflow mimicking a half-wake situation, using different control methods and maximum flap angles. Three different control inputs are simulated: a prescribed flap angle based on the a priori knowledge of the inflow velocity, a controller based on the blade root flap-wise moment feedback, and finally a controller based on a Pitot tube velocity feedback measured at flap mid-span. Good agreement is found between EllipSys3D and HAWC2 in the prediction of the dynamic blade loads, considering the high complexity of the flow case.
机译:各种研究项目都集中在使用叶片上的控制装置(例如襟翼)来主动控制风力涡轮机的空气动力负荷。尚未利用完整的转子CFD或实验结果对使用的气动弹性代码的气动载荷预测进行充分验证。在这项研究中,对NREL 5MW参考风力涡轮机转子的空气动力学代码HAWC2和Navier-Stokes代码EllipSys3D的空气动力学预测进行了比较,并采用了可变形后缘襟翼的刚性配置。研究了半转子面经历类似于上游风力涡轮机的尾流的情况,该情况适合于比较与突然的空气动力响应和可控襟翼的影响有关的两个代码的预测。使用不同的控制方法和最大襟翼角度,驱动后缘襟翼以减轻模仿半唤醒状态的非均匀流入所增加的负载。模拟了三种不同的控制输入:基于流入速度的先验知识的规定襟翼角度,基于叶片根部襟翼方向力矩反馈的控制器,最后是基于襟翼中段测得的皮托管速度反馈的控制器-跨度。考虑到流动情况的高度复杂性,EllipSys3D和HAWC2在动态叶片载荷的预测中找到了很好的协议。

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