首页> 外文会议>8th Biennial Conference on Engineering Systems Design and Analysis 2006 vol.1 >DESIGN AND ANALYSIS OF THE BASIC COMPONENTS IN A SOFC ANODE CYCLE
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DESIGN AND ANALYSIS OF THE BASIC COMPONENTS IN A SOFC ANODE CYCLE

机译:SOFC阳极循环基本成分的设计与分析

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Rolls-Royce Fuel Cell Systems Ltd (RRFCS) is developing a 1MW SOFC hybrid system for power generation with the University of Genoa contributing design of the anode and cathode flow systems. The fuel cell design contains two basic cycles: a cathode cycle to deliver air to the stack and an anode cycle to supply fuel. Both of these are based on a recycling technology where a proportion of the exhaust from each stream is recycled to the inlet of that stream. On the anode side this achieves heating of the fuel to the optimum temperature thereby avoiding undesired carbon deposition. An ejector has been designed to achieve a good mix of the exhaust fuel from the stack with fresh fuel from the pre-processor. Downstream from the ejector a reformer converts methane into hydrogen by steam reforming. The gas produced as a result has the composition and the temperature that generates the optimum condition for the operation of the fuel cell stack. The current paper highlights how the design process of the ejector and a reformer to achieve optimum operation conditions for the fuel cell stack.
机译:罗尔斯·罗伊斯燃料电池系统有限公司(RRFCS)正在与热那亚大学一起开发用于发电的1MW SOFC混合动力系统,该系统用于阳极和阴极流动系统的设计。燃料电池设计包含两个基本循环:将空气输送到电池堆的阴极循环和用于供应燃料的阳极循环。两者均基于一种回收技术,其中每条流的一部分废气被再循环到该流的入口。在阳极侧,这将燃料加热到最佳温度,从而避免了不希望的碳沉积。设计了一个喷射器,以使烟囱中的废气与预处理器中的新鲜燃油充分混合。在喷射器的下游,重整器通过蒸汽重整将甲烷转化为氢气。结果产生的气体具有为燃料电池堆的运行产生最佳条件的成分和温度。本论文重点介绍了喷射器和重整器的设计过程,该过程如何实现燃料电池堆的最佳运行条件。

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