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A comparison of the performance characteristics of large 2 MW and 3 MW wind turbines on existing onshore wind farms

机译:现有陆上风电场大型2 MW和3 MW风力涡轮机的性能特性比较

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The aim of the current study is to compare the performance of large 2 MW and 3 MW wind turbines operating on existing onshore wind farms using Blade Element Momentum (BEM) theory and Angular Momentum (AM) theory and illustrate the performance characteristic curves of the turbines as a function of wind speed (U∞). To achieve this, the measurement data obtained from two different Wind Energy Power Plants (WEPPs) located in the Hatay region of Turkey was used. Two different horizontal-axis wind turbines with capacities of 2 MW and 3 MW were selected for evaluation and comparison. The hub-height wind speed (UD), turbine power output (P), atmospheric air temperature (Tatm) and turbine rotational speed (Ω) data were used in the evaluation of the turbine performance characteristics. Curves of turbine power output (P), axial flow induction factor (α), turbine rotational speed (Ω), turbine power coefficient (CP), blade tip speed ratio (λ), thrust force coefficient (CT) and thrust force (T) as a function of U∞ were obtained for the 2 MW and 3 MW wind turbines and these characteristic curves were compared. Results revealed that, for the same wind speed conditions, the higher-capacity wind turbine (3 MW) was operating at higher turbine power coefficient rates, while rotating at lower rotational speed ratios than the lower-capacity wind turbine (2 MW).
机译:目前的研究目的是使用刀片元素动量(BEM)理论和角动量(AM)理论,并说明涡轮机的性能特征曲线在现有的陆上风电场上运行的大型2 MW和3 MW风力涡轮机的性能。作为风速(U∞)的函数。为此,使用位于土耳其哈德地区的两个不同的风能发电厂(WEPP)获得的测量数据。选择具有2 MW和3 MW的容量的两个不同的水平轴风力涡轮机进行评估和比较。集线器高风速(UD),涡轮机电源输出(P),大气空气温度(TATM)和涡轮机转速(ω)数据用于涡轮机性能特性的评估。涡轮机电源输出曲线(P),轴流感应系数(α),涡轮转速(ω),涡轮功率系数(CP),叶片尖速比(λ),推力系数(CT)和推力(T )作为U∞的功能,获得了2 MW和3 MW风力涡轮机,并比较了这些特征曲线。结果表明,对于相同的风速条件,更高容量的风力涡轮机(3MW)以更高的涡轮机功率系数速率运行,同时以低于低容量的风力涡轮机(2mW)在较低的转速比下旋转。

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