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DESIGN OF A PARTIAL ADMISSION TURBINE FOR AN ORGANIC RANKINE CYCLE WITH ENVIRONMENTAL FLUCTUATION CONSIDERATION

机译:考虑环境波动的有机朗肯循环部分进气涡轮的设计

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This paper describes the design and testing of a high-efficiency turbo-generator for use in an Organic Rankine Cycles (ORC) with a power target of 30-100 kWe. The elegant yet simple design consists of a hermetically sealed, single piece rotor, with axial turbine and permanent magnet generator. The design employs compliant foil bearings (CFB), which eliminate the need for any external lubricates or dynamic seals and no contamination risk to the process fluid. A unique partial admission turbine concept is employed which provides better than 80% efficiency across a wide range of seasonal temperature variation, such as those occurring in northern latitudes, where summers can be hot (> 35°C) and humid and winters are extremely cold (< -20°C) and dry. We describe the design and prototype manufacturing as it pertains to micro and meso-scale turbines (< 100 kW) in terms of thermodynamic cycle considerations, turbine design, rotor-bearing dynamics, overall system design and scale-up considerations.
机译:本文介绍了用于功率为30-100 kWe的有机朗肯循环(ORC)的高效涡轮发电机的设计和测试。优雅而简单的设计包括一个密封的单片转子,带有轴向涡轮和永磁发电机。该设计采用了柔顺的箔片轴承(CFB),从而消除了对任何外部润滑或动态密封的需求,并且对过程流体没有污染风险。采用独特的部分进气涡轮概念,可在各种季节温度变化范围内提供高于80%的效率,例如发生在北纬地区的夏季,那里夏季可能很热(> 35°C)潮湿而冬季非常寒冷(<-20°C)干燥。我们从热力循环考虑因素,涡轮设计,转子轴承动力学,整体系统设计和放大考虑因素的角度,描述了与微型和中型涡轮机(<100 kW)相关的设计和原型制造。

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