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首页> 外文期刊>International journal of hydrogen energy >Three-dimensional model for stacks of tubular high temperature proton exchange membrane fuel cells incorporating a thin layer approach for the membrane electrode assembly
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Three-dimensional model for stacks of tubular high temperature proton exchange membrane fuel cells incorporating a thin layer approach for the membrane electrode assembly

机译:用于膜电极组件薄层方法的管状高温质子交换膜燃料电池堆叠的三维模型

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摘要

A three-dimensional, non-isothermal, steady state model for stacks of tubular high temperature proton exchange membrane fuel cells (HT PEM FCs) is developed. It is based on a thin layer approach for the membrane-electrode assembly while retaining Butler-Volmer kinetics, concentration and Ohmic losses on both electrodes. It solves for flow, temperature and concentration fields as well as locally resolved current densities for multiple cells. Single cell results for the polarization curve compare well with experimental data for single tubular HT PEM FCs. The model allows for efficient simulations of stacks of multiple tubular HT PEM FCs with a shared air channel in which the interactions between local FC performance and flow, temperature and concentration fields pose a major design challenge. The effects of flow field design, flow rate and cell distance in a stack of 7 tubular cells are investigated and basic approaches for the design of such stacks are derived. (C) 2021 Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:开发了一种三维,非等温,用于堆管的管状高温质子交换膜燃料电池(HT PEM FCS)的稳态模型。它基于膜 - 电极组件的薄层方法,同时在两个电极上保持管道 - 活力动力学,浓度和欧姆损耗。它解决了流动,温度和浓度场以及多个细胞的局部分辨的电流密度。偏振曲线的单个电池结果与单管HT PEM FCS的实验数据相比很好。该模型允许利用共享空气通道高效模拟多管HT PEM FCS的堆栈,其中局部FC性能和流量之间的相互作用,温度和浓度字段构成了主要的设计挑战。研究了7个管状电池堆叠中的流场设计,流速和电池距离的影响,得到了这种堆叠设计的基本方法。 (c)由elsevier有限公司发布的2021年代表氢能源出版物LLC发布。

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