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Efficiency Improvement of a New Vertical Axis Wind Turbine by Individual Active Control of Blade Motion

机译:叶片运动的单独主动控制提高了新型垂直轴风力发电机的效率

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In this paper, a research for the performance improvement of the straight-bladed vertical axis wind turbine is described. To improve the performance of the power generation system, which consists of several blades rotating about axis in parallel direction, the cycloidal blade system and the individual active blade control system are adopted, respectively. Both methods are variable pitch system. For cycloidal wind turbine, aerodynamic analysis is carried out by changing pitch angle and phase angle based on the cycloidal motion according to the change of wind speed and wind direction, and control mechanism using the cycloidal blade system is realized for 1kw class wind turbine. By this method, electrical power is generated about 30% higher than wind turbine using fixed pitch angle method. And for more efficient wind turbine, individual pitch angle control of each blade is studied. By maximizing the tangential force in each rotating blade at the specific rotating position, optimal pitch angle variation is obtained. And several airfoil shapes of NACA 4-digit and NACA 6-series are studied. Aerodynamic analysis shows performance improvement of 60%. To realize this motion, sensing and actuating system is designed.
机译:本文介绍了直叶片垂直轴风力发电机性能改进的研究。为了提高由几个绕平行轴旋转的叶片组成的发电系统的性能,分别采用了摆线叶片系统和单个主动叶片控制系统。两种方法都是可变螺距系统。对于摆线风力发电机,根据风速和风向的变化,根据摆线运动改变摆线角和相角,进行气动分析,并实现了采用摆线叶片系统的控制机构,用于1kw级风力发电机。通过这种方法,使用固定螺距角方法产生的电能比风力涡轮机高约30%。对于更高效的风力涡轮机,研究了每个叶片的单独桨距角控制。通过最大化每个旋转叶片在特定旋转位置处的切向力,可以获得最佳桨距角变化。并研究了NACA 4位和NACA 6系列的几种翼型。空气动力学分析表明性能提高了60%。为了实现该运动,设计了传感和致动系统。

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