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Yaw analysis of a micro-scale horizontal-axis wind turbine operating in turbulent wind conditions

机译:湍流条件下运行的微型水平轴风力发电机的偏航分析

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Building-mounted micro-wind turbines are capable of contributing a significant proportion of a building's energy needs. However, the introduction of this technology in built-up areas has been limited due to a number of issues, such as lower wind speeds, high turbulence and noise. This study presents an investigation into the effect of turbulence, which is more prominent in the built environment, on the operation of a micro-scale horizontal-axis wind turbine. For this purpose, an innovative method of sensing the yaw position of the wind turbine is required, which is discussed along with detailed methodology and the results obtained. The wind turbine used in the experiment uses a swing rudder system, and the effectiveness of this in turbulent conditions was also investigated. This study concluded that the wind turbine missed ~20% of the total power available in the wind and that the swing rudder system was suited to high wind speeds, while the fixed rudder suited to low wind speeds.
机译:安装在建筑物上的微型风力发电机能够满足建筑物能源需求的很大一部分。但是,由于许多问题,例如较低的风速,较高的湍流和噪声,在建筑区域中引入该技术受到了限制。这项研究提出了湍流对微型水平轴风力涡轮机运行的影响的研究,湍流在建筑环境中更为突出。为此,需要一种创新的方法来检测风力涡轮机的偏航位置,并与详细的方法和获得的结果一起进行讨论。实验中使用的风力涡轮机使用回转舵系统,并且还研究了其在湍流条件下的有效性。该研究得出的结论是,风力涡轮机错过了风力中约20%的可用总功率,并且摆动舵系统适合于高风速,而固定舵适合于低风速。

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