首页> 外文会议>International Conference on Computational Science and Its Applications(ICCSA 2006) pt.1; 20060508-11; Glasgow(GB) >A Theoretical Multiscale Analysis of Electrical Field for Fuel Cells Stack Structures
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A Theoretical Multiscale Analysis of Electrical Field for Fuel Cells Stack Structures

机译:燃料电池堆结构电场的理论多尺度分析

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Fuel cell stack systems are under intensive development for mobile and stationary power applications. In particular, Proton Exchange Membrane (PEM) Fuel Cells (also known as Polymer Electrolyte Membrane Fuel Cells) are currently in a more mature stage for ground vehicle applications. This paper proposes a theoretical innovative approach to the analysis of the electrochemical transient behavior (anode-cathode). The transient behavior due to the electrochemical dynamic may impact the behavior of the resulting load current. Boundary conditions influence the resulting electric field, the boundary condition are strongly depending of H_2 and O_2 physical parameters. Maxwell's equations are used in order to describe the model. Solutions through dyadic harmonic wavelets at different levels of resolution are presented. Wavelets approach, through their different space-time levels of resolution, can favorable describe the segmented space structure of the stack. In the meantime, transient dynamic inside of the stack can be adaptively studied. An outlook closes the paper.
机译:燃料电池堆系统正在针对移动和固定功率应用进行密集开发。特别是,质子交换膜(PEM)燃料电池(也称为聚合物电解质膜燃料电池)目前正处于地面车辆应用的更成熟阶段。本文提出了一种理论上创新的方法来分析电化学瞬态行为(阳极-阴极)。由于电化学动力学的瞬态行为可能会影响所得负载电流的行为。边界条件影响所得的电场,该边界条件强烈取决于H_2和O_2物理参数。为了描述模型,使用了麦克斯韦方程。提出了通过二阶谐波小波在不同分辨率下的解决方案。小波方法通过其不同的时空分辨率级别,可以有利地描述堆栈的分段空间结构。同时,可以自适应地研究堆内部的瞬态动态。前景关闭了文件。

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