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Performance analysis of bladeless jet propulsion micro-steam turbine for micro-CHP (combined heat and power) systems utilizing low-grade heat sources

机译:适用于利用低级热源的微型CHP(热电联产)系统的无叶片喷射推进微汽轮机性能分析

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Recently, the micro CHP (combined heat and power) systems were developed to utilize the various low-grade heat sources in the industrial and residential sectors. However, the low-grade heat sources for micro-CHP systems were unsuitable for application to the conventional blade-type micro-steam turbines, because the low-grade heat sources of the saturated steam conditions included with condensing droplets caused blade erosion. The bladeless jet propulsion micro-steam turbine, a new-concept turbine, has been designed to operate with the low-grade heat sources of saturated steam conditions. In this paper, the theoretical study predicted the performance of this turbine under the given condition, while the experimental study was performed to obtain the performance factors. We estimated the amounts of turbine loss and the reasons for the losses through a comparison of the theoretical and experimental results. In the experimental results, we obtained an electrical power of 1.5 kW and a turbine efficiency of 6.3% at the pressure ratio of 4. These results show the application potential to micro-CHP system using low-grade heat sources. We also concluded that the bladeless jet propulsion micro-steam turbine can be applied to micro-CHP systems in the industrial and residential sectors if the performance of the turbine can be increased through improvements. (C) 2016 Elsevier Ltd. All rights reserved.
机译:最近,开发了微型CHP(热电联产)系统,以利用工业和住宅领域的各种低等级热源。然而,用于微型热电联产系统的低级热源不适合应用于常规叶片型微蒸汽涡轮机,因为饱和蒸汽条件下的低级热源包括冷凝液滴会导致叶片腐蚀。无叶片喷射推进微蒸汽涡轮机是一种新概念的涡轮机,设计用于在饱和蒸汽条件下的低级热源下运行。在本文中,理论研究预测了该涡轮机在给定条件下的性能,而进行了实验研究以获得性能因子。通过理论和实验结果的比较,我们估算了涡轮机的损耗量以及损耗的原因。在实验结果中,在压力比为4的情况下,我们获得了1.5 kW的电功率和6.3%的涡轮效率。这些结果显示了在使用低级热源的微型CHP系统中的应用潜力。我们还得出结论,如果可以通过改进来提高涡轮机的性能,那么无叶片喷气推进微蒸汽涡轮机可以应用于工业和住宅领域的微型热电联产系统。 (C)2016 Elsevier Ltd.保留所有权利。

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