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A novel approach to model the transient behavior of solid-oxide fuel cell stacks

机译:一种模拟固体氧化物燃料电池堆瞬态行为的新方法

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This paper presents a novel approach to model the transient behavior of solid-oxide fuel cell (SOFC) stacks in two and three dimensions. A hierarchical model is developed by decoupling the temperature of the solid phase from the fluid phase. The solution of the temperature field is considered as an elliptic problem, while each channel within the stack is modeled as a marching problem. This paper presents the numerical model and cluster algorithm for coupling between the solid phase and fluid phase. For demonstration purposes, results are presented for a stack operated on pre-reformed hydrocarbon fuel. Transient response to load changes is studied by introducing step changes in cell potential and current. Furthermore, the effect of boundary conditions and stack materials on response time and internal temperature distribution is investigated.
机译:本文提出了一种新颖的方法来模拟二维和三维固体氧化物燃料电池(SOFC)堆的瞬态行为。通过将固相的温度与流体的相去耦,可以开发出层次模型。温度场的解被认为是椭圆问题,而堆栈中的每个通道都被建模为行进问题。本文提出了固相和液相耦合的数值模型和聚类算法。出于演示目的,给出了使用预重整碳氢燃料运行的烟囱的结果。通过在电池电势和电流中引入阶跃变化来研究对负载变化的瞬态响应。此外,研究了边界条件和堆垛材料对响应时间和内部温度分布的影响。

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