首页> 外文会议>International symposium on solid oxide fuel cells;SOFC-XII >Multi-Scale Modeling of Solid Oxide Fuel Cells: From Patterned Anodes to a Power Plant System
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Multi-Scale Modeling of Solid Oxide Fuel Cells: From Patterned Anodes to a Power Plant System

机译:固体氧化物燃料电池的多尺度建模:从图案化阳极到发电厂系统

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Methods of mathematical modeling and numerical simulation of solid oxide fuel cells (SOFCs) are increasingly being used as tool to understand and optimize both, fundamental electrochemical properties and technological applications. The goal of modeling activities is to identify critical components and processes responsible for cell and system performance, lifetime and cost. We present a multi-scale and multi-physics modeling and simulation methodology that covers (ⅰ) elementary kinetics on the surfaces, (ⅱ) properties of porous electrodes, (ⅲ) mass, charge and heat transport of cells and stack repeat elements, and (ⅳ) system integration with balance-of-plant components. The coupling over the various scales is realized via tailored simulation programs and software interfaces. Various examples are given. The activities demonstrate the viability of a multi-scale and multi-physics modeling approach for both, understanding fundamental processes and supporting application design of SOFCs.
机译:固体氧化物燃料电池(SOFC)的数学建模和数值模拟方法越来越多地用作了解和优化基本电化学性能和技术应用的工具。对活动进行建模的目的是确定负责单元和系统性能,寿命和成本的关键组件和过程。我们提出了一种多尺度,多物理场的建模和仿真方法论,涵盖了(ⅰ)表面的基本动力学,(ⅱ)多孔电极的性质,(ⅲ)电池,电池组和堆叠重复元件的质量,电荷和热传递,以及(ⅳ)与工厂平衡组件的系统集成。通过量身定制的仿真程序和软件界面,可以实现各种规模的耦合。给出了各种示例。这些活动展示了一种多尺度,多物理场建模方法的可行性,既可以理解基本过程,又可以支持SOFC的应用设计。

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