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Studies on a two-staged micro-combustor for a micro-reformer integrated with a micro-evaporator

机译:集成有微蒸发器的微型重整器的两级微燃烧器的研究

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摘要

A new micro-combustor configuration for a micro fuel-cell reformer integrated with a micro-evaporator is studied experimentally and computationally. The micro-combustor as a heat source is designed for a 10-15 W micro-reformer using the steam reforming method. In order to satisfy the primary requirements for designing a micro-combustor integrated with a micro-evaporator, i.e.. stable burning in a small confinement and maximum heat transfer through a wall, the present micro-combustor is a simply cylinder, which is easy to fabricate, but is two-staged (expanding downstream) to control ignition and stable burning. The aspect ratio and wall thickness of the micro-combustor substantially affect ignition and thermal characteristics. For optimized design conditions, a pre-mixed micro-flame is easily ignited in the expanded second-stage combustor, moves into the smaller first-stage combustor, and finally is stabilized therein. The measured and predicted temperature distributions across the micro-combustor walls indicate that heat generated in the micro-combustor is well transferred. Thus, the present micro-combustor configuration can be applied to practical micro-reformers integrated with a micro-evaporator for use with fuel cells.
机译:通过实验和计算研究了用于集成有微蒸发器的微燃料电池重整器的新型微燃烧器配置。使用蒸汽重整方法将微型燃烧器作为热源设计用于10-15 W的微型重整炉。为了满足设计与微型蒸发器集成的微型燃烧器的主要要求,即在小空间内稳定燃烧并通过壁传递最大的热量,本微型燃烧器是简单的圆筒,易于制造。可制造,但分为两阶段(向下游扩展)以控制着火和稳定燃烧。微型燃烧器的长宽比和壁厚基本上影响着火和热特性。为了优化设计条件,预混合的微火焰易于在膨胀的第二级燃烧器中点燃,移入较小的第一级燃烧器,最后在其中稳定。横跨微型燃烧器壁的测量和预测的温度分布表明,微型燃烧器中产生的热量被良好地传递。因此,本微型燃烧器的构造可以应用于与微型蒸发器集成在一起的实际微型重整器,以用于燃料电池。

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