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Pressure-based lift estimation and its application to feedforward load control employing trailing-edge flaps

机译:基于压力的提升估计及其在采用后缘襟翼的前馈负载控制的应用

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This experimental load control study presents results of an active trailing-edge flap feedforward controller for wind turbine applications. The controller input is derived from pressure-based lift estimation methods that rely either on a quasi-steady method, based on a three-hole probe, or on an unsteady method that is based on three selected surface pressure ports. Furthermore, a standard feedback controller, based on force balance measurements, is compared to the feedforward control. A Clark-Y airfoil is employed for the wing that is equipped with a trailing-edge flap of x / c = 30 % chordwise extension. Inflow disturbances are created by a two-dimensional active grid. The Reynolds number is Re =290?000 , and reduced frequencies of k =0.07 up to k =0.32 are analyzed. Within the first part of the paper, the lift estimation methods are compared. The surface-pressure-based method shows generally more accurate results, whereas the three-hole probe estimate overpredicts the lift amplitudes with increasing frequencies. Nonetheless, employing the latter as input to the feedforward controller is more promising as a beneficial phase lead is introduced by this method. A successful load alleviation was achieved up to reduced frequencies of k =0.192 .
机译:该实验载荷控制研究提出了用于风力涡轮机应用的有源后缘襟翼馈电控制器的结果。控制器输入来自基于压力的提升估计方法,其基于三孔探头或基于三个选定的表面压力端口的不稳定方法依赖于准稳态方法。此外,基于力平衡测量的标准反馈控制器与前馈控制进行比较。用于机翼的克拉克-Y翼型用于X / C = 30%曲线延伸的后缘瓣的机翼。流入干扰由二维活动网格创建。雷诺数是重新= 290?000,分析了k = 0.07至k = 0.32的降低频率。在纸张的第一部分内,比较电梯估计方法。基于表面压力的方法展示了一般更准确的结果,而三孔探针估计估计具有增加频率的提升幅度。尽管如此,随着该方法引入有益阶段,使用后者作为进给控制器的输入更有前景。成功的载荷减轻达到了k = 0.192的频率。

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