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Numerical Modelling of an H-type Darrieus Wind Turbine Performance under Turbulent Wind

机译:湍流条件下H型达里厄斯风力发电机性能的数值模拟

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This paper presents the force interaction between fluid flow and a rotating H-type Darrieus vertical axis wind turbine. The main goal of this study is to determine the wind rotor’s performance characteristics under turbulent wind: torque M = f (n), normal force FN = f (n), output power P = f (n) and the aerodynamic characteristics CM = f (λ), CN = f (λ), CP = f (λ). The flow passing through the turbine has a complex structure due to the rotation of the rotor. The constantly changing angular position of the turbine’s blades is leading to a variation in the blades angle of attack. This angle can vary from positive to negative values in just a single turbine revolution. The constant fluctuations of the angle of attack are the main factor which leads to the unsteady nature of the flow passing through the turbine. At low tip-speed ratios, the phenomena deep dynamic stall occurs which leads to intensive eddy generation. When the turbine is operating at higher tip-speed ratio the flow is mainly attached to the blades and the effect of the dynamic stall over the turbine performance is from weak to none. The Darrius turbine performance characteristics are obtained through a numerical investigation carried out for several tip-speed ratios. The used CFD technique is based upon the URANS approach for solving the Navier-Stokes equations in combination with the turbulence model k – ω SST. Also, a numerical sensitive study concerning some of the simulation parameters is carried out.
机译:本文介绍了流体流与旋转H型Darrieus垂直轴风力涡轮机之间的力相互作用。这项研究的主要目的是确定风轮在湍流风下的性能特征:扭矩M = f(n),法向力FN = f(n),输出功率P = f(n)和空气动力学特性CM = f (λ),CN = f(λ),CP = f(λ)。由于转子的旋转,流经涡轮的流具有复杂的结构。涡轮机叶片的不断变化的角位置导致叶片迎角的变化。仅在一次涡轮旋转中,该角度就可以从正值变化到负值。迎角的恒定波动是导致流过涡轮的流体不稳定的主要因素。在低速比下,会发生深度动态失速现象,从而导致强烈的涡流产生。当涡轮机以更高的叶尖速比运行时,气流主要附着在叶片上,动态失速对涡轮机性能的影响从微弱变为无。 Darrius涡轮机的性能特征是通过对几种叶尖速比进行的数值研究获得的。所使用的CFD技术基于URANS方法,结合湍流模型k –ωSST求解Navier-Stokes方程。此外,还进行了涉及某些模拟参数的数值敏感性研究。

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