串联受控双涌流 FOWT 转子的转子性能和风浪相互作用

YuanTso Li, Wei Yu, Hamid Sarlak
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引用次数: 0

摘要

本研究利用大涡流模拟(LES)和推杆线模型(ALM),研究了在实际湍流流入条件(TI = 5.3%)下运行的两个风力涡轮机转子系统。两个转子串联放置,间距为 5D,激增运动为谐波运动。为了确保在所有条件下都能获得最大功率,采用了一种广泛使用的转矩控制策略--MPPT(最大功率点跟踪)。对转子性能和现场数据进行了调查,以检验控制器的有效性和影响。结果发现,当涌流运动适中时,控制器能以很小的幅度(∼ 1%)提高涌流转子的功率性能。结果还显示,控制器的反应速度比考虑的浪涌频率要慢得多,这使得转子的功率性能比准稳定预测值(目标值)要差,并使系统动力学变得复杂。总体而言,控制器的实施对尾流特性的影响较小;然而,激波诱导周期相干结构(SIPCS)的强度却得到了增强。
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Rotor Performance and Wake Interaction of Controlled Dual Surging FOWT Rotors in Tandem
Using Large Eddy Simulation (LES) with Actuator Line Model (ALM), this work investigates the system of two surging wind turbine rotors operating under realistic turbulent inflow conditions (TI = 5.3%). The two rotors are placed in tandem with a spacing of 5D and the surging motions are harmonic. A widely used torque controlling strategy, MPPT (Maximum Power Point Tracking), is implemented to ensure a maximium power extraction under all conditions. The rotor performances as well as the field data are surveyed to examine the effectiveness and impacts of the controller. It is found that the power performances of the surging rotors are benefited by the controller with a small margin (∼ 1%) when the surging motions are moderate. The results also show that the controller reacts much slower than the considered surging frequency, making the power performances of the rotors worse than the quasi-steady predictions (targeted values) and complicating the system dynamics. In general, the implementation of the controller has minor impacts on the wake characteristics; however, the strengths of Surging Induced Periodic Coherent Structures (SIPCS) are found to be enhanced.
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