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Moment of Inertia Dependence of Vertical Axis Wind Turbines in Pulsating Winds

机译:脉动风中垂直轴风力发电机的惯性依赖矩

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摘要

Vertical Axis Wind Turbines (VAWTs) are unaffected by changes in wind direction, and they have a simple structure and the potential for high efficiency due to their lift driving force. However, VAWTs are affected by changes in wind speed, owing to effects originating from the moment of inertia. In this study, changes in the rotational speed of a small VAWT in pulsating wind, generated by an unsteady wind tunnel, are investigated by varying the wind cycle and amplitude parameters. It is shown that the responses observed experimentally agree with simulations based on torque characteristics obtained under steady rotational conditions. Additionally, a simple equation expressing the relationship between the rotational change width and amplitude of the pulsating wind is presented. The energy efficiency in a pulsating wind remains constant with changes in both the moment of inertia and the wind cycle; however, the energy efficiency decreases when the wind amplitude is large.
机译:垂直轴风力涡轮机(VAWT)不受风向变化的影响,并且具有简单的结构,并且由于其提升驱动力而具有高效率的潜力。然而,由于来自惯性矩的影响,VAWT受风速变化的影响。在这项研究中,通过改变风周期和振幅参数,研究了由不稳定风洞产生的小型VAWT在脉动风中的转速变化。结果表明,实验观察到的响应与基于在稳定旋转条件下获得的扭矩特性的模拟相吻合。另外,提出了一个简单的方程式,该方程式表示旋转变化宽度和脉动风的振幅之间的关系。脉动风的能量效率随着惯性矩和风周期的变化而保持恒定。但是,当风幅较大时,能量效率降低。

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