首页> 外文期刊>Magnetic resonance imaging: An International journal of basic research and clinical applications >Two dimensional distribution measurement of electric current generated in a polymer electrolyte fuel cell using 49 NMR surface coils
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Two dimensional distribution measurement of electric current generated in a polymer electrolyte fuel cell using 49 NMR surface coils

机译:使用49 NMR表面线圈在聚合物电解质燃料电池中产生的电流的二维分布测量

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摘要

In order to increase the current density generated in a PEFC (polymer electrolyte fuel cell), a method for measuring the spatial distribution of both the current and the water content of the MEA (membrane electrode assembly) is necessary. Based on the frequency shifts of NMR (nuclear magnetic resonance) signals acquired from the water contained in the MEA using 49 NMR coils in a 7 x 7 arrangement inserted in the PEFC, a method for measuring the two-dimensional spatial distribution of electric current generated in a unit cell with a power generation area of 140 mm x 160 mm was devised. We also developed an inverse analysis method to determine the two-dimensional electric current distribution that can be applied to actual PEFC connections. Two analytical techniques, namely coarse graining of segments and stepwise search, were used to shorten the calculation time required for inverse analysis of the electric current map. Using this method and techniques, spatial distributions of electric current and water content in the MEA were obtained when the PEFC generated electric power at 100 A.
机译:为了增加PEFC(聚合物电解质燃料电池)中产生的电流密度,需要一种用于测量MEA(膜电极组件)的电流和水含量的空间分布的方法是必要的。基于使用49 NMR线圈在PEFC中的7×7布置中从MEA中包含的水中所含的NMR(核磁共振)信号的频移,用于测量产生的电流二维空间分布的方法设计在具有140mm×160mm的发电面积的单元电池中。我们还开发了一种反向分析方法,以确定可以应用于实际PEFC连接的二维电流分布。使用两种分析技术,即粗粒粗粒和逐步搜索,用于缩短电流图的逆分析所需的计算时间。使用该方法和技术,当PEFC产生100a的电力时,获得了MEA中电流和水含量的空间分布。

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