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One-dimensional thermal model for direct methanol fuel cell stacks Part II. Model based parametric analysis and predicted temperature profiles

机译:直接甲醇燃料电池堆的一维热模型第二部分。基于模型的参数分析和预测温度曲线

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摘要

Using the one-dimensional thermal model for the direct methanol fuel cell (DMFC) (presented in Part 1), based on the differential thermal energy conservation equation, which describes the thermal behaviour of a DMFC stack comprised of up to 25 large (272 cm~2) cells, temperature profiles are predicted along the stack length. The model is used to assess effect of operating parameters (temperature gradient, current density, flow rate and pressure) on the temperature profile along the stack. In addition, it enables investigation of the stack thermal management and the effect of altering a number of systematic parameters such as the number of cells in the stack, the active and exposed area and the interactions between the physical properties of the various components. The model aids the fuel cell system designer to gain an insight in the stack structure and select materials and geometric configurations that are optimal from a thermal management point of view.
机译:基于直接热能守恒方程,使用直接甲醇燃料电池(DMFC)的一维热模型(在第1部分中介绍),该模型描述了由25个大(272厘米)大的DMFC电池组构成的热行为。 〜2)电池,沿堆栈长度预测温度分布。该模型用于评估操作参数(温度梯度,电流密度,流速和压力)对沿烟囱温度分布的影响。此外,它还可以研究电池组的热管理以及更改许多系统参数(例如电池组中电池的数量,有效和裸露区域以及各种组件的物理特性之间的相互作用)的影响。该模型可帮助燃料电池系统设计人员深入了解燃料电池堆的结构,并从热管理的角度选择最佳的材料和几何形状。

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