Wu Zhen, Zhu Pengfei, Huang Yakun, Yao Jing, Yang Fusheng, Zhang Zaoxiao, Ni Meng
School of Chemical Engineering and Technology, Xi'an Jiaotong University, Xi'an 710049, China.
State Key Laboratory of Multiphase Flow for Power Engineering, Xi'an Jiaotong University, Xi'an 710049, China.
Chem Rev. 2025 Feb 26;125(4):2184-2268. doi: 10.1021/acs.chemrev.4c00614. Epub 2025 Feb 7.
Commercialization of solid oxide fuel cell (SOFC) systems requires improved SOFC performance and durability, which is highly dependent on the coupling of the SOFC stack with other auxiliary components, SOFC stack configuration, and electrode microstructure. Optimization of SOFC systems at the system/stack/cell/electrode scale via experimentation is expensive and challenging, whereas numerical modeling can be fast and cost-effective. Although many excellent reviews on SOFCs have been published, the previous articles lack practical problem-oriented literature classification and do not cover new emerging models, such as artificial intelligence (AI) assisted models, heterogeneous models, and so on. These models are important for accelerating the solution of large-scale multiphysics models and describing mesoscopic electrode behaviors. In this review, a top-down approach is adopted that can truly guide SOFC system/stack/cell/electrode design to meet targeted applications. Another distinct feature of this review is the inclusion of the latest developments in SOFC modeling. This review offers a thorough summary and in-depth analysis of an extensive collection of research on SOFC simulations, classifying the models into distinct categories based on their varying scales, and serves as a valuable tool to assist researchers in selecting the most suitable models for diverse research objects.
固体氧化物燃料电池(SOFC)系统的商业化需要提高SOFC的性能和耐久性,这高度依赖于SOFC电池堆与其他辅助部件的耦合、SOFC电池堆配置以及电极微观结构。通过实验在系统/电池堆/单电池/电极尺度上对SOFC系统进行优化既昂贵又具有挑战性,而数值模拟则可以快速且经济高效。尽管已经发表了许多关于SOFC的优秀综述,但以往的文章缺乏面向实际问题的文献分类,并且没有涵盖新兴模型,如人工智能(AI)辅助模型、非均匀模型等。这些模型对于加速大规模多物理场模型的求解以及描述介观电极行为非常重要。在本综述中,采用了一种自上而下的方法,该方法能够真正指导SOFC系统/电池堆/单电池/电极设计以满足目标应用。本综述的另一个显著特点是纳入了SOFC建模的最新进展。本综述对大量SOFC模拟研究进行了全面总结和深入分析,根据不同尺度将模型分为不同类别,并作为一个有价值的工具,帮助研究人员为不同的研究对象选择最合适的模型。