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首页> 外文期刊>Journal of power sources >Modelling and analysis of a direct methanol fuel cell with under-rib mass transport and two-phase flow at the anode
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Modelling and analysis of a direct methanol fuel cell with under-rib mass transport and two-phase flow at the anode

机译:具有肋下传质和阳极两相流的直接甲醇燃料电池的建模与分析

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摘要

For the past decade, extensive mathematical modelling has been conducted on the design and optimization of liquid-feed direct methanol fuel cells (DMFCs). Detailed modelling of DMFC operations reveals that a two-phase flow phenomenon at the anode and under-rib convection due to the pressure difference between the adjacent channels both contribute significantly to mass-transfer in a DMFC and its output performance. In practice, comprehensive simulations based on the finite volume technique for two-phase flow require a high level of numerical complexity in computation. This study presents a complexity-reduced mathematical model that is developed to cover both phenomena for a realistic, but fast, in computation for the prediction and analysis of a DMFC prototype design. The simulation results are validated against experimental data with good agreement. Analysis of the DMFC mass-transfer is made to investigate methanol distribution at anode and its crossover through the proton-exchange membrane. From a comparison of the influence of two-phase flow and under-rib mass-transfer on DMFC performance, the significance of gas-phase methanol transport is established. Simulation results suggest that both the optimization of the flow-field structure and the fuel cell operating parameters (flow rate, methanol concentration and operating temperature) are important factors for competitive DMFC performance output.
机译:在过去的十年中,对液体进料直接甲醇燃料电池(DMFC)的设计和优化进行了广泛的数学建模。 DMFC操作的详细模型显示,由于相邻通道之间的压力差,阳极处的两相流现象和肋下对流都显着影响了DMFC中的传质及其输出性能。在实践中,基于有限体积技术的两相流综合模拟要求在计算中具有很高的数值复杂性。这项研究提出了一种降低复杂性的数学模型,该模型的开发涵盖了这两种现象,从而为DMFC原型设计的预测和分析提供了一种现实而快速的计算方法。仿真结果与实验数据吻合良好。对DMFC传质进行分析,以研究甲醇在阳极的分布及其通过质子交换膜的穿越。通过比较两相流和肋下传质对DMFC性能的影响,确定了气相甲醇传输的重要性。仿真结果表明,流场结构的优化和燃料电池的运行参数(流速,甲醇浓度和运行温度)均是DMFC具有竞争力的性能输出的重要因素。

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