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An open-source library for the numerical modeling of mass-transfer in solid oxide fuel cells

机译:一个用于固体氧化物燃料电池传质数值模拟的开源库

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摘要

The generation of direct current electricity using solid oxide fuel cells (SOFCs) involves several interplaying transport phenomena. Their simulation is crucial for the design and optimization of reliable and competitive equipment, and for the eventual market deployment of this technology. An open-source library for the computational modeling of mass-transport phenomena in SOFCs is presented in this article. It includes several multicomponent mass-transport models (i.e. Fickian, Stefan-Maxwell and Dusty Gas Model), which can be applied both within porous media and in porosity-free domains, and several diffusivity models for gases. The library has been developed for its use with OpenFOAM ~?, a widespread open-source code for fluid and continuum mechanics. The library can be used to model any fluid flow configuration involving multicomponent transport phenomena and it is validated in this paper against the analytical solution of one-dimensional test cases. In addition, it is applied for the simulation of a real SOFC and further validated using experimental data.
机译:使用固体氧化物燃料电池(SOFC)产生直流电涉及多种相互作用的运输现象。他们的仿真对于可靠和具有竞争力的设备的设计和优化,以及对该技术的最终市场部署至关重要。本文提供了一个开放源代码库,用于计算SOFC中的物质传输现象。它包括几个可以在多孔介质内和无孔域中应用的多组分传质模型(即Fickian,Stefan-Maxwell和Dusty Gas模型),以及几个气体扩散模型。该库是为与OpenFOAM〜?一起使用而开发的,OpenFOAM是流体和连续体力学的广泛开放源代码。该库可用于对涉及多组分传输现象的任何流体流动配置进行建模,并针对一维测试用例的解析解在本文中进行了验证。此外,它还用于模拟真实的SOFC,并使用实验数据进行了进一步验证。

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