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Investigation on the impact of design wind speed and control strategy on the performance of fixed-pitch variable-speed wind turbines

机译:设计风速和控制策略对定距变速风力发电机组性能影响的研究

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摘要

Wind turbine blade design optimization remains one of the fundamental research areas for modern wind turbine technology. The general design process for fixed-pitch variablespeed wind turbine blades assumes the rated wind speed as the design wind speed. However, for a fixed-pitch wind turbine with fixed rotor diameter and rated power at rated speed, we do not know the optimum design wind speed, which should be used for the calculation of the wind turbine blade parameters based on a particular aerofoil for a specific site with low annual mean wind speed.udThis paper investigates the impact of design wind speed and control strategy on the performance of fixed-pitch wind turbines through a set of design case studies. The design wind speeds are considered at the more prevalent wind speeds than the rated wind speed. Three different control strategies are addressed, i.e. maximum power point tracking, mixture of variable-speed and fixed-speed, and over-speeding. Annual energy production, blade manufacturing cost, aerodynamic load performance and cost of energy are analyzed and compared using the design case studies. The results reveal a clear picture in determining the optimum design wind speed and control strategy for both maximizing annual energy production and minimizing cost of energy.
机译:风力涡轮机叶片设计优化仍然是现代风力涡轮机技术的基础研究领域之一。固定螺距变速风力涡轮机叶片的一般设计过程将额定风速假定为设计风速。但是,对于具有固定转子直径和额定速度下的额定功率的固定螺距风力涡轮机,我们不知道最佳设计风速,应将其用于基于特定翼型的风轮机叶片参数的计算。 ud本文通过一组设计案例研究,研究了设计风速和控制策略对固定螺距风力涡轮机性能的影响。设计风速被认为是比额定风速更普遍的风速。解决了三种不同的控制策略,即最大功率点跟踪,变速和定速混合以及超速。使用设计案例研究分析并比较了年度能源生产,叶片制造成本,空气动力学负载性能和能源成本。结果揭示了确定最佳设计风速和控制策略的清晰图景,以实现年发电量最大化和能源成本最小化。

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