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Effect of Different Vane Angles on Rotor- Casing Diameter Ratios to Optimize the Shaft Output of A Vaned Type Novel Air Turbine

机译:不同叶片角度对转子-壳体直径比的影响,以优化新型叶片式涡轮机的轴输出

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This paper deals with new concept of compressed air energy storage system using atmospheric air at ambient temperature as a zero pollution power source for running motorbikes. The proposed motorbike is equipped with an air turbine in place of an internal combustion engine, and transforms the energy of the compressed air into shaft work. The mathematical modeling and performance evaluation of such small capacity compressed air driven vaned type novel air turbine is presented here. The effect of isobaric admission and adiabatic expansion of high pressure air for different rotor to casing diameter ratios with respect to different vane angles (number of vanes) have been considered and analyzed. It is found that the shaft work output is optimum for some typical values of rotor to casing diameter ratios at a particular vane angle (i.e. no. of vanes). In this study, when casing diameter is considered 100 mm, and rotor to casing diameter ratios are kept 0.70 to 0.55, the average maximum power is obtained to the order of 4.95 kW (6.6 HP) which is sufficient to run motorbikes.
机译:本文提出了一种压缩空气储能系统的新概念,该系统利用环境温度的大气作为运行摩托车的零污染动力源。所提出的摩托车配备有代替内燃机的空气涡轮,并将压缩空气的能量转化为轴功。本文介绍了这种小容量压缩空气驱动叶片式新型空气涡轮机的数学建模和性能评估。已经考虑并分析了不同转子与机壳直径比相对于不同叶片角(叶片数)的等压进气和绝热膨胀的影响。发现对于特定叶片角度(即叶片数量)的转子与壳体直径比的一些典型值,轴功输出是最佳的。在本研究中,当外壳直径被认为是100 mm,并且转子与外壳直径之比保持在0.70至0.55时,获得的平均最大功率约为4.95 kW(6.6 HP),足以运行摩托车。

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