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Effect of yaw angle on the global performances of Horizontal Axis Wind Turbine-QBlade simulation

机译:偏航角对水平轴风力涡轮机-QBLADE模拟的全局性能的影响

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The yaw angle has a great importance in the wind turbine working.Even though most of the large turbines have yaw mechanisms,they do not have an instant response.The aerodynamic forces and torque on the blades fluctuate,depending on the yaw angle.The design and the numerical simulation of the wind turbine were performed with the Blade Element Momentum method in open source QBlade software.The power coefficient,torque,thrust and power output generated by wind turbine in non-yawed flow were analysed.The simulations have been performed for non-yawed flow,in rotational speed range between 2100 and 3300 rpm and wind velocity of 15 m/s.Simulations for yaw angle range have been performed between ± 60°,with 5° step at rated rotational speed of 2700 rpm.The results are presented through charts for global parameters in both non-yawed flow,and yawed flow.The effect of yaw angle on global performances of the wind turbines is more important after the value of 25° when the power output decrease with about 15% from power output in non-yawed flow.The average value of the exponent from conventional relation of power coefficient in yawed flow is 1.77 in good concordance with experimental tests.
机译:横摆角在风力涡轮机工作中具有重要意义。虽然大多数大型涡轮机具有偏航机构,但它们没有即时反应。刀片上的空气动力和扭矩波动,取决于偏航角度。设计在开源QBLADE软件中,用叶片元件动量方法进行风力涡轮机的数值模拟。突破了由风力涡轮机产生的功率系数,扭矩,推力和功率输出进行了分析。已经进行了模拟在2100至3300rpm之间的转速范围内的非偏航流程和15米/秒的风速。横摆角度范围为±60°,额定转速为2700rpm的5°。结果在非打开流动和偏航流中的全局参数上呈现。横摆角对风力涡轮机的全局性能的影响更为重要,在功率输出减少时25°从非打开流量的功率输出中大约15%。从Rawed流程中传统的电力系数关系中的指数的平均值为1.77,具有实验测试的良好一致性。

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