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Theoretical and experimental study on the aerodynamic characteristics of a horizontal axis wind turbine

机译:水平轴风力发电机空气动力特性的理论和实验研究

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The aerodynamic performance characteristics of a horizontal axis wind turbine (HAWT) were investigated theoretically by an analysis involving a combination of momentum, energy and blade element theory by means of the strip element method, and experimentally by the use of a subscale demonstration model. In this study, two approaches involving combination analysis are made use of, namely, the thrust-torque and the thrust-energy methods. Although both approaches yield identical results, the latter is superior for elucidating the relationship of the kinetic energy of the flows on the blades. Scale experiments are performed with three types of wing aerofoil involving different arrangements with the free stream velocity, U_∞ =0.8-4.5 m/s, and for the open type of wind tunnel with an outlet duct diameter of 0.88 m. The experimental and theoretical characteristics of the HAWT using the different three types of the HAWT blades are discussed by reference to the power, torque and thrust coefficients, C_P, C_T, C_(th), and the tip speed ratio λ from the point of view of variable pitch control and fixed pitch stall control methods for the output regulation. The aeronautical characteristics predicted by means of the present numerical approaches, for large units involving large power generation at high efficiency, are discussed, and it is clear how to obtain optimized design parameters that play a significant role in the overall performance.
机译:理论上,通过带状元素方法,结合动量,能量和叶片元素理论进行分析,研究了水平轴风力涡轮机(HAWT)的空气动力学性能特征,并通过使用小规模演示模型进行了实验研究。在这项研究中,利用了两种涉及组合分析的方法,即推力-扭矩法和推力-能量法。尽管两种方法都产生相同的结果,但是后者对于阐明叶片上的流的动能之间的关系是优越的。使用三种类型的机翼翼型进行规模试验,这些翼型翼型的自由流速度U_∞= 0.8-4.5 m / s,涉及不同的布置,出口通道直径为0.88 m的开放式风洞。从功率,扭矩和推力系数C_P,C_T,C_(th)和叶尖速比λ的角度讨论了使用三种不同类型的HAWT叶片的HAWT的实验和理论特性输出调节的可变螺距控制和固定螺距失速控制方法的概述。讨论了通过本数值方法预测的涉及高效率大功率发电的大型机组的航空特性,并且很清楚如何获得在总体性能中起重要作用的优化设计参数。

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