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Analysis of aerodynamic characteristics of 2 MW horizontal axis large wind turbine

机译:2 MW水平轴大型风力发电机的空气动力特性分析

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摘要

In this study, aerodynamic characteristics of a horizontal axis wind turbine (HAWT) were evaluated and discussed in terms of measured data in existing onshore wind farm Five wind turbines (T1, T2, T3, T4 and T5) were selected, and hub -height wind speed, UD, wind turbine power output, P and turbine rotational speed, Q data measured from these turbines were used for evaluation. In order to obtain characteristics of axial flow induction factor, a, power coefficient, C-p, thrust force coefficient, CT, thrust force, T and tangential flow induction factor, a', Blade Element Momentum (BEM) theory was used. According to the results obtained, during a year, probability density of turbines at a rotational speed of 16.1 rpm was determined as approximately 45%. Optimum tip speed ratio was calculated to be 7.12 for most efficient wind turbine. Maximum G was found to be 30% corresponding to this tip speed ratio.
机译:在这项研究中,对水平轴风力发电机(HAWT)的空气动力特性进行了评估,并根据现有陆上风电场的实测数据进行了讨论。选择了五台风力发电机(T1,T2,T3,T4和T5),并且轮毂高度风速,UD,风力涡轮机功率输出,P和涡轮机转速,从这些涡轮机测得的Q数据用于评估。为了获得轴流感应系数的特性,使用了a,功率系数,C-p,推力系数,CT,推力,T和切向流感应系数,并使用了叶片分子动量(BEM)理论。根据获得的结果,在一年中,涡轮机在16.1 rpm转速下的概率密度确定为大约45%。对于最高效的风力涡轮机,最佳叶尖速度比经计算为7.12。发现最大G为对应于该尖端速度比的30%。

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