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Effects of optimized airfoil on vertical axis wind turbine aerodynamic performance

机译:优化翼型对垂直轴风电机组气动性能的影响

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摘要

This paper investigates the effects of optimized airfoil on VAWT (vertical axis wind turbine) aerodynamic performance. The thickness and camber of the airfoil are selected as the constraints, the value of the maximum tangential force coefficient is chosen as the objective function, optimizing NACA0015 airfoil to enhance the wind energy utilization efficiency of the VAWT, a 3D CFD simulation is used to get the flow characteristics of the VAWT under variable tip speed ratio (TSR) conditions. To ensure the accuracy of the numerical simulation, the power coefficient calculated by CFD is validated against previous experimental result. The optimized airfoil is shown to improve the aerodynamic performance of the wind turbine. Through investigating the effects of optimized airfoil on the rotor flow field, this paper proposes measures to improve the VAWT aerodynamic performance under variable TSRs: measures should be made to avoid or delay the flow separation of blades and the stall vortex shedding and reduce the stall vortex scale at low TSR, while at high TSR measures should be made to shorten the wake length of the blades and reduce its diffusion range.
机译:本文研究了优化翼型对VAWT(垂直轴风力涡轮机)空气动力学性能的影响。选择翼型的厚度和外倾角作为约束条件,选择最大切向力系数值作为目标函数,优化翼型NACA0015以提高VAWT的风能利用效率,采用三维CFD仿真得到VAWT在变尖速比(TSR)条件下的流动特性。为保证数值模拟的准确性,将CFD计算的功率系数与先前的实验结果进行了验证。优化的翼型被证明可以改善风力涡轮机的空气动力学性能。通过研究优化翼型对转子流场的影响,提出了提高可变TSR下VAWT空气动力学性能的措施:在低TSR下应采取措施避免或延迟叶片的流动分离和失速涡流脱落,减少失速涡尺度,而在高TSR下应采取措施缩短叶片尾流长度并减小其扩散范围。

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