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A Coupled Physics and Electrochemical Reaction Model for Porous Microstructural Electrodes of Solid Oxide Electrolysis Cell

机译:固体氧化物电解槽多孔微结构电极的物理-电化学反应耦合模型

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A coupled physics and electrochemical reaction model was developed to evaluate the performance of solid oxide electrolysis cell (SOEC) porous electrode microstructures. The influence of geometric and transport properties on the performance of porous SOEC electrode microstructures is investigated. The detailed micro-scale model was developed in OpenFOAM (Open Field Operation and Manipulation), which is a free open-source computational fluid dynamic (CFD) software package. The sample electrode microstructures investigated in this work were obtained from both experimental reconstruction and synthetic numerical manufacturing methods. The experimental electrode sample was reconstructed using a focused ion beam-scanning electron microscopy (FIB-SEM) technique. An in-house computational technique, written in C++ language, was used to synthetically manufacture the electrode microstructures and was based on the drop-and-roll method of particle placement. The geometric and physical input parameters (e.g. particle-size distribution, particle-to-particle overlap, and porosity) for the numerical model were approximated from the FIB-SEM based experimental reconstruction model. The resulting simulated samples from both methods were then converted into numerical meshes for detailed micro-scale model analysis. Inference on the design and optimization process of SOEC electrodes is given from evaluating the relationship between the electrode voltage and current density for various compositions of initial manufacturing parameters.
机译:建立了耦合的物理和电化学反应模型,以评估固体氧化物电解池(SOEC)多孔电极微观结构的性能。研究了几何和传输性质对多孔SOEC电极微结构性能的影响。详细的微观模型是在OpenFOAM(开放式现场操作和操纵)中开发的,它是一个免费的开源计算流体动力学(CFD)软件包。在这项工作中研究的样品电极微观结构是从实验重建和合成数值制造方法获得的。使用聚焦离子束扫描电子显微镜(FIB-SEM)技术重建实验电极样品。使用C ++语言编写的内部计算技术用于合成制造电极微结构,该技术基于粒子放置的滚动法。数值模型的几何和物理输入参数(例如粒度分布,粒子间重叠和孔隙率)是从基于FIB-SEM的实验重建模型中近似得出的。然后将两种方法得到的模拟样本转换为数值网格,以进行详细的微尺度模型分析。通过评估各种初始制造参数组成的电极电压和电流密度之间的关系,可以得出SOEC电极的设计和优化过程的推论。

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