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Mechanical simulation of a Proton Exchange Membrane Fuel Cell stack using representative elementary volumes of stamped metallic bipolar plates

机译:使用代表性基本体积的冲压金属双极板对质子交换膜燃料电池堆进行机械模拟

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摘要

The control of the performance of a fuel cell needs the knowledge of mechanical stresses. A finite element model submitted to operational static loads is developed for pure mechanical analysis of a stack. Adapted to practical implementation in the frame of industrial projects, the tool runs on work stations. Modelling and simulations at the early stage of the stack architecture development are mandatory to lower the costs of the stack and to contribute in designing component dimensions and forms, particularly of stamped metallic bipolar plates or clamping systems. The model should also be useful for accurate local analyses and channel geometry of metallic bipolar plates must be modelled in detail. But the number of degrees of freedom is huge and some model simplification is required to compute a whole stack. The homogenisation technique was applied, replacing cell parts with composite finite elements or homogenised representative elementary volumes. This method is explained considering a single cell. Then a fuel cell stack model is built and finally computed using homogenised properties. The distribution of stresses computed at stack level can be applied as boundary conditions on detailed models to analyse local phenomena.
机译:燃料电池性能的控制需要机械应力知识。开发了用于操作静态载荷的有限元模型,用于堆的纯机械分析。该工具适用于工业项目框架中的实际实施,可在工作站上运行。在堆栈体系结构开发的早期阶段,必须进行建模和仿真,以降低堆栈的成本,并有助于设计组件的尺寸和形式,尤其是冲压金属双极板或夹紧系统。该模型还应该对精确的局部分析有用,并且必须对金属双极板的通道几何结构进行详细建模。但是自由度的数量是巨大的,并且需要一些模型简化来计算整个堆栈。应用了均质化技术,用复合有限元或均质化的代表性基本体积替换单元格部分。考虑单个单元来解释该方法。然后建立燃料电池堆模型,最后使用均质特性进行计算。可以将在堆栈级别计算的应力分布作为边界条件应用到详细模型上,以分析局部现象。

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