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Two-phase flow modeling of liquid-feed direct methanol fuel cell

机译:液体进料直接甲醇燃料电池的两相流模拟

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A two-phase flow model was developed for liquid-feed methanol fuel cells (DMFC) to evaluate the effects of various operating parameters on the DMFC performance. In this study, a general homogenous two-dimensional model is described in details for both porous layers and fluid channels. This two-dimensional general model accounts for fluid flow, electrochemical kinetics, current density distribution, hydrodynamics, multi-component transport, and methanol crossover. It starts from basic transport equations including mass conservation, momentum transport, energy balance, and species concentration conservation in different elements of the fuel cell sandwich, as well as the equations for the phase potential in the membrane and the catalyst layers. These governing equations are coupled with chemical reaction kinetics by introducing various source terms. It is found that all these equations are in a very similar form except the source terms. Based on this observation, all the governing equations can be solved using the same numerical formulation in the single domain without prescribing the boundary conditions at the various interfaces between the different elements of the fuel cell. The numerical simulation results, such as velocity field, local current density distribution, and species concentration variation along the flow channel, under various operation conditions are computed. The performance of the DMFC affected by various parameters such as temperature, pressure, and methanol concentration is investigated in this paper. The numerical results are further validated with available experimental data from the published literatures.
机译:开发了用于液体进料甲醇燃料电池(DMFC)的两相流模型,以评估各种操作参数对DMFC性能的影响。在这项研究中,详细描述了多孔层和流体通道的通用均匀二维模型。该二维通用模型考虑了流体流动,电化学动力学,电流密度分布,流体动力学,多组分迁移和甲醇交换。它从基本的运输方程式开始,包括质量守恒,动量运输,能量平衡和燃料电池夹层结构不同元素中的物种浓度守恒,以及膜和催化剂层中的相势方程式。通过引入各种源项,这些控制方程式与化学反应动力学联系在一起。发现所有这些方程式都具有非常相似的形式,除了源项之外。基于此观察结果,可以在单个域中使用相同的数值公式求解所有控制方程,而无需规定燃料电池不同元件之间各个界面的边界条件。计算了各种操作条件下的数值模拟结果,例如速度场,局部电流密度分布以及沿流道的物种浓度变化。本文研究了DMFC的性能受温度,压力和甲醇浓度等各种参数的影响。数值结果用来自已出版文献的可用实验数据进一步验证。

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