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Ejector design and performance evaluation for recirculation of anode gas in a micro combined heat and power systems based on solid oxide fuel cell

机译:基于固体氧化物燃料电池的微型热电联产系统中阳极气体再循环的喷射器设计和性能评估

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摘要

In this paper, a theoretical analysis of an ejector for micro combined heat and power systems based on Solid Oxide Fuel Cell (SOFC) for small-scale residential applications is presented. A novel detailed procedure for the ejector designing is provided and its effectiveness is validated through a comparison with testing results. The ejector geometry is analysed in terms of component efficiency. The SOFC system performance with regard the recirculation of anode gas is finally discussed. Results show that fuel inlet temperature and the diameter of the ejector mixing chamber of the ejector largely affect the ejector performance. A large mixing chamber diameter allows a high entrainment ratio but causes a worse ejector efficiency suggesting a highest efficiency still ensuring the required entrainment ratio. At system level, it is shown that the degree of fuel pre-reforming affects the recirculation ratio. Besides, if anode gas recirculation is implemented the system capital cost decreases due to reduction in size of ancillary components. The high electrical efficiency achieved by the system reduces the heat output and makes it more attractive when less heat is demanded.
机译:在本文中,对用于小型住宅应用的基于固体氧化物燃料电池(SOFC)的微型热电联产系统喷射器进行了理论分析。提供了一种新颖的喷射器设计详细程序,并通过与测试结果进行比较来验证其有效性。根据组件效率分析喷射器的几何形状。最后讨论了关于阳极气体再循环的SOFC系统性能。结果表明,燃料入口温度和喷射器的喷射器混合室的直径在很大程度上影响喷射器的性能。较大的混合室直径允许较高的夹带率,但会导致喷射器效率变差,表明最高效率仍可确保所需的夹带率。在系统级别,表明燃料的预重整程度会影响再循环率。此外,如果实施阳极气体再循环,由于辅助部件尺寸的减小,系统的投资成本将降低。该系统实现的高电效率降低了热量输出,并在需要更少热量时使其更具吸引力。

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