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Planar SOFC system modelling and simulation including a 3D stack module

机译:平面SOFC系统建模和仿真,包括3D堆栈模块

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摘要

A solid oxide fuel cell (SOFC) system consists of a fuel cell stack with its auxiliary components. Modelling an entire SOFC system can be simplified by employing standard process flowsheeting software. However, no in-built SOFC module exists within any of the commercial flowsheet simulators. In Amiri et al. (Comput. Chem. Eng., 2015, 78:10-23), a rigorous SOFC module was developed to fill this gap. That work outlined a multi-scale approach to SOFC modelling and presented analyses at compartment, channel and cell scales. The current work extends the approach to stack and system scales. Two case studies were conducted on a simulated multilayer, planar SOFC stack with its balance of plant (BoP) components. Firstly, the effect of flow maldistribution in the stack manifold on the SOFC's internal variables was examined. Secondly, the interaction between the stack and the BoP was investigated through the effect of recycling depleted fuel. The results showed that anode gas recycling could be used for managing the gradients within the stack, while also improving fuel utilisation and water management.
机译:固体氧化物燃料电池(SOFC)系统由燃料电池堆及其辅助组件组成。通过采用标准工艺流程图软件,可以简化整个SOFC系统的建模。但是,任何商用流程图模拟器中都没有内置的SOFC模块。在Amiri等。 (Comput。Chem。Eng。,2015,78:10-23),开发了一种严格的SOFC模块来填补这一空白。这项工作概述了SOFC建模的多尺度方法,并提供了隔室,通道和细胞尺度的分析。当前的工作将方法扩展到堆栈和系统规模。在模拟的多层平面SOFC烟囱及其植物平衡(BoP)组件上进行了两个案例研究。首先,研究了烟囱歧管中流量分配不均对SOFC内部变量的影响。其次,通过回收耗尽燃料的效果研究了燃料电池堆与BoP之间的相互作用。结果表明,阳极气体再循环可用于管理烟囱内的梯度,同时还可以提高燃料利用率和水管理。

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