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Time-Domain Modeling of Tower Shadow and Wind Shear in Wind Turbines

机译:风力发电机塔影与风切变的时域建模

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摘要

Tower shadow and wind shear contribute to periodic fluctuations in electrical power output of a wind turbine generator. The frequency of the periodic fluctuations isntimes the blade rotational frequencyp, wherenis the number of blades. For three-bladed wind turbines, this inherent characteristic is known as the3peffect. In a weak-power system, it results in voltage fluctuation or flicker at the point of common coupling of the wind turbine to the grid. The phenomenon is important to model so as to evaluate the flicker magnitude at the design level. Hence, the paper aims to develop a detailed time-domain upwind fixed speed wind turbine model which includes the turbine's aerodynamic, mechanical, electrical, as well as tower shadow and wind shear components. The model allows users to input factors such as terrain, tower height, and tower diameter to calculate the3poscillations. The model can be expanded to suit studies involving variable speed wind turbines. Six case studies demonstrate how the model can be used for studying wind turbine interconnection and voltage flicker analysis. Results indicate that the model performs as expected.
机译:塔影和风切变导致风力涡轮发电机的电力输出的周期性波动。周期性波动的频率等于叶片旋转频率p的倍数,从而叶片的数量。对于三叶片风力涡轮机,这种固有特性被称为三效。在弱功率系统中,这会在风力涡轮机与电网的公共耦合点处导致电压波动或闪烁。该现象对于建模很重要,以便在设计级别评估闪烁幅度。因此,本文旨在开发详细的时域逆风定速风力涡轮机模型,其中包括涡轮机的空气动力学,机械,电气以及塔影和风切变组成部分。该模型允许用户输入诸如地形,塔架高度和塔架直径之类的因子来计算三个摆幅。该模型可以扩展以适合涉及变速风力涡轮机的研究。六个案例研究证明了该模型如何用于研究风机互连和电压闪变分析。结果表明该模型按预期执行。

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