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Dimensional Analysis of Horizontal Axis Wind Turbine Scaling Design

机译:水平轴风力涡轮机缩放设计的尺寸分析

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Observation of a small-scale wind turbine in a wind tunnel is a preliminary way to produce data that would describe the aerodynamic characteristics of the large one. The full-scale wind turbine has much greater Reynolds number than the miniature that makes the data might not be valuable directly. In this paper, the application of the Buckingham π theorem is studied in predicting the performances of the full-scale wind turbine based on the small-scale wind turbine performances. The blade element momentum theory (BEMT) computation procedure is used to generate torque and thrust data of wind turbines that have diameters of 2.4 m, 10.0 m, 50.0 m, and 75.0 m. The generated data from the smallest rotor is prepared as small-scale wind turbine data. Based on the small-scale rotor data, the analysis produces equations expressing the correlation of rotor torque and thrust associated with diameters. Then, the powers of the wind turbines computed by BEMT are compared with the powers estimated by the dimensional analysis. The results show that the technique gives excellent accuracy. Therefore, it can be used confidently to assess the power measurement results of the large-scale rotor.
机译:在风洞一个小型风力发电机的观察是产生将描述一个大的空气动力学特性数据的初步方法。满级的风机具有比使得数据可能不直接是有价值的微型更大的雷诺数。在本文中,白金汉π定理的应用在预测基础上,小型风力发电机组的表演全面的风力涡轮机的性能进行了研究。叶片元件动量理论(BEMT)计算过程被用于生成具有直径2.4米,10.0米,50.0微米,75.0米风力涡轮机的转矩和推力的数据。从最小的转子所产生的数据被制备成小规模的风力涡轮机数据。基于小规模转子数据,分析产生表示转子扭矩和直径相关联的推力的相关方程。然后,通过计算BEMT风力涡轮机的功率与由三维分析估计的权力比较。结果表明,该技术提供了出色的精度。因此,它可以被自信用于评估大型转子的功率测量结果。

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