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A theoretical study of membrane constraint in polymer-electrolyte fuel cells

机译:聚合物电解质燃料电池中膜约束的理论研究

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A mathematical model is developed that examines the effect of having a constrained membrane in a fuel cell. During operation, a polymer-electrolyte fuel-cell membrane is prone to swell but is unable to do so by system design. This builds up a stress that affects transport in, and the properties of the membrane. This report is the first to incorporate such effects into a macrohomogeneous model. Both the physical and mathematical effects are described. Results include the magnitude of constraint, the change in water content of the membrane attributed to constraint, and one-dimensional simulations showing the effect of constraint on the water balance of the fuel cell. The paper demonstrates the need for considering membrane constraint both in modeling and experimental studies of fuel cells. (C) 2004 American Institute of Chemical Engineers.
机译:建立了数学模型,该模型检查了燃料电池中受约束的膜的影响。在运行过程中,聚合物电解质燃料电池膜容易膨胀,但无法通过系统设计来膨胀。这会增加应力,影响膜的运输和性能。该报告是第一个将这种影响纳入宏观同质模型的报告。同时描述了物理效果和数学效果。结果包括约束的大小,归因于约束的膜中水分含量的变化,以及一维模拟,显示约束对燃料电池水平衡的影响。本文证明了在燃料电池的建模和实验研究中都需要考虑膜约束。 (C)2004美国化学工程师学会。

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