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Modeling of Planar Self-Breathing PEMFC

机译:平面自呼吸PEMFC的建模

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This paper presents a model-based analysis of a proton exchange membrane fuel cell (PEMFC) with a planar design for the power supply of portable applications. The cell is operated with hydrogen and it consists of an open cathode side allowing for passive, self-breathing operation. This planar fuel cell is fabricated using printed circuit board (PCB) technology. Long-term stability of this type of fuel cell has been demonstrated. A stationary, two-dimensional, isothermal, mathematical model of the planar fuel cell is developed. Fickian diffusion of the gaseous components (O_2, H_2, H_2O) in the gas diffusion layers and the catalyst layers is accounted for. Transport of water is considered in the gaseous phase only. The electrochemical reactions are described by the Tafel equation. The potential and current balance equations are solved separately for protons and electrons. The resulting system of partial differential equations is solved by a finite element method using the software FEMLAB (COMSOL Inc.). Three different cathode opening ratios are realized and the corresponding polarization curves are measured. The measurements are compared to numerical simulation results. The model reproduces the shape of the measured polarization curves and comparable limiting current density values due to mass transport limitation are obtained.
机译:本文介绍了一种基于平面模型的质子交换膜燃料电池(PEMFC)的基于模型的分析,用于便携式应用的电源。该电池由氢气操作,由开放的阴极侧组成,可进行被动的自呼吸操作。该平面燃料电池使用印刷电路板(PCB)技术制造。已经证明了这种燃料电池的长期稳定性。建立了平面燃料电池的固定二维等温数学模型。解释了气体组分(O_2,H_2,H_2O)在气体扩散层和催化剂层中的费克扩散。仅在气相中考虑水的输送。电化学反应由Tafel方程式描述。分别针对质子和电子求解电势和电流平衡方程。使用软件FEMLAB(COMSOL Inc.)通过有限元方法求解所得的偏微分方程组。实现了三种不同的阴极开口率,并测量了相应的极化曲线。将测量结果与数值模拟结果进行比较。该模型再现了测得的极化曲线的形状,并且由于质量传输限制而获得了可比较的限制电流密度值。

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