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THEORETICAL PERFORMANCE OF WIND WHEEL TURBINES

机译:风轮涡轮的理论性能

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摘要

A wind wheel turbine designed for low wind speed applications has been analytically investigated. The turbine is simple constructed from a bladed-assembiy rotor directly exposed to the free wind on the upper half and exposd to the wind through a multiple ducting system on the lower half. A theoretical analysis using an engineering model based on the impulse momentum theory is described for a range of blade numbers. The computed results of the torque and power coefficients for two-, three-and four-blade-wheels are presented. The optimum number of blades was found to be three, using the maximum power coefficient as the performance criterion. The computed values of the power coefficients are found to be higher than those associated with other wind machines for tip speed ratios up to a value of unity. The results also show that the 3-blade-wheel, with accelerating flow through the ducting system, has increased the power coefficient by 3.5 times as much as the ideal propeller type windmill. Torque coefficients which may have potential use in some domestic applications are also described. A starting torque coefficient as high as 6.0, for example, is computed for a 2-blade-wheel.
机译:分析性地研究了设计用于低风速应用的风力涡轮机。该涡轮机由叶片式叶片转子简单构造而成,转子直接暴露于上半部分的自由风中,并通过下半部分的多重管道系统暴露于风中。描述了使用基于冲量动量理论的工程模型对一系列叶片数进行的理论分析。给出了两叶轮,三叶轮和四叶轮的扭矩和功率系数的计算结果。使用最大功率系数作为性能标准,发现叶片的最佳数量为三个。对于叶尖速度比,直至达到一个统一的值,发现功率系数的计算值高于与其他风力机相关的功率系数。结果还表明,三叶轮通过管道系统加速流动,使功率系数增加了理想螺旋桨式风车的3.5倍。还介绍了可能在某些家庭应用中潜在使用的扭矩系数。对于两叶轮,计算出的启动扭矩系数高达6.0。

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