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Investigating the influence of dimensional scaling on aerodynamic Characteristics of wind turbine using CFD simulation

机译:使用CFD模拟研究尺寸缩放对风力涡轮机空气动力学特性的影响

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Wind turbines are used in a variety of applications with different performance requirements. Investigating the influence of scaling on wind turbine characteristics can pave the way to utilize the experience gained from a smaller turbine for a larger one. In this paper, the effects of wind turbine size on aerodynamic characteristics of a rotor blade are examined using CFD simulation. NREL phase VI wind turbine rotor was simulated in order to validate the results and ensure the accuracy of the CFD model. A 2 MW wind turbine was then chosen as a large turbine and a scaled down model of its rotor was simulated numerically. The results of the simulation were introduced to Similarity Theory relations in order to predict the aerodynamic characteristics of the 2 MW wind turbine. The 2 MW turbine was also simulated and the results of the simulation were compared to predictions of Similarity Theory. It was observed that the results of the simulation completely follow the values predicted by Similarity Theory. Both Similarity Theory predictions and simulation results demonstrated that the torque increases with the cube of change in rotor diameter whereas the thrust value and aerodynamic forces grow with the square of change in diameter. (C) 2016 Elsevier Ltd. All rights reserved.
机译:风力涡轮机用于具有不同性能要求的各种应用中。研究比例缩放对风力涡轮机特性的影响可以为将较小的涡轮机获得的经验用于较大的涡轮机铺平道路。在本文中,使用CFD仿真研究了风力涡轮机尺寸对转子叶片空气动力学特性的影响。为了验证结果并确保CFD模型的准确性,对NREL VI阶段风力涡轮机转子进行了仿真。然后选择2兆瓦的风力涡轮机作为大型涡轮机,并对其转子的按比例缩小模型进行数值模拟。将模拟结果引入相似性理论关系中,以预测2 MW风力发电机的空气动力学特性。还对2 MW汽轮机进行了仿真,并将仿真结果与相似性理论的预测进行了比较。可以看出,模拟结果完全遵循相似性理论预测的值。相似性理论的预测和仿真结果均表明,转矩随着转子直径变化的三次方而增加,而推力值和空气动力随着直径变化的平方而增长。 (C)2016 Elsevier Ltd.保留所有权利。

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