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Three-dimensional analysis for effect of channel configuration on the performance of a small air-breathing proton exchange membrane fuel cell (PEMFC)

机译:通道结构对小型透气质子交换膜燃料电池(PEMFC)性能影响的三维分析

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摘要

A coupled 3D mathematical model for the real geometry of an air-breathing proton exchange membrane (PEMFC) was developed and validated by experimental data. The free convection in the cathode side was included in the model. The concentration over-potential was considered as a function of mass transfer coefficient of oxygen in the catalyst layer. Governing equations possess the features that fluid dynamics, mass/heat transfer are coupled with the electrochemical reactions. The model was solved in a commercial software STAR-CD based on the finite-difference and finite-volume methods, and the electrochemical features and water transport in membrane are solved simultaneously through a user-specific subroutine. To investigate the effect of channel configuration on air-breathing fuel cell performance, calculations for three different widths of channels have been executed. Results show the best performance can be obtained in the cell with cathode channel width of 3 mm (open ratio of 75.9 percent).
机译:开发了用于空气质子交换膜(PEMFC)真实几何形状的耦合3D数学模型,并通过实验数据进行了验证。阴极侧的自由对流包括在模型中。浓度超电势被认为是催化剂层中氧气的传质系数的函数。控制方程具有流体动力学,传质/传热与电化学反应相结合的特征。该模型在商业软件STAR-CD上基于有限差分和有限体积方法进行了求解,并且通过用户特定的子程序同时解决了电化学特性和水在膜中的传输。为了研究通道配置对空气呼吸型燃料电池性能的影响,已对三种不同通道宽度进行了计算。结果表明,在阴极通道宽度为3 mm(开口率为75.9%)的电池中可获得最佳性能。

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