首页> 外文会议>International conference on fuel cell science, engineering and technology >ANALOGIES BETWEEN FUEL CELLS AND HEAT EXCHANGERS: FROM PHENOMENA TO DESIGN PRINCIPLES
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ANALOGIES BETWEEN FUEL CELLS AND HEAT EXCHANGERS: FROM PHENOMENA TO DESIGN PRINCIPLES

机译:燃料电池和热交换器之间的类比:从现象到设计原则

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Fuel cells and heat exchangers have numerous similarities. Both technologies are used to produce an "energy-in-transit." Heat exchangers foster thermal transport (heat) as a result of thermal potential differences between streams; fuel cells foster charge transport across electrodes (current leading to power) as a result of electrochemical/electric potential differences between the reactant streams and fuel cell electrodes. Additional analogs include series resistance formulations, active regions for transport phenomena and pertinent capacity rates. These similarities have motivated the extension of heat exchanger design philosophies to fuel cells development. Pilot simulations have been done wherein solid oxide fuel cell geometries and process settings are being optimized via electrochemical pinch points, electroactive area optimization (patterned after optimal area allocation within heat exchangers), electrode "fins" for diminished polarization, and electrochemical multi-staging (motivated by heat exchanger network concepts). The prevailing theme has been to bridge methodologies from the mature field of heat exchanger design to improve fuel cell design practices.
机译:燃料电池和热交换器有许多相似之处。这两种技术被用于生产“能量在途”。热交换器培育热传递(热)作为流之间的热电位差的结果;燃料电池在电极培育电荷传输(电流导致功率)作为反应物流和燃料电池电极之间的电化学/电势的差异的结果。另外的类似物包括串联电阻制剂,运输现象和相关的容量率的有源区。这些相似性,有上进心换热器的设计理念的延伸到燃料电池的发展。导频模拟已经完成,其中,固体氧化物燃料电池的几何形状和过程设置被经由电化学夹点,电活性区域优化(热交换器内最佳区域的分配后图案化),电极“鳍”用于减少极化,和电化学多分段(优化通过热交换器网络概念动机)。当时的主题已经从换热器设计的成熟场桥的方法,以提高燃料电池的设计手法。

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