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Performance Analysis of Air Breathing Proton Exchange Membrane Fuel Cell Stack (PEMFCS) At Different Operating Condition

机译:不同操作条件下空气呼吸质子交换膜燃料电池堆(PEMFC)的性能分析

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The answer for an emission free power source in future is in the form of fuel cells which combine hydrogen and oxygen producing electricity and a harmless by product-water. A proton exchange membrane (PEM) fuel cell is ideal for automotive applications. A single cell cannot supply the essential power for any application. Hence PEM fuel cell stacks are used. The effect of different operating parameters namely: type of convection, type of draught, hydrogen flow rate, hydrogen inlet pressure, ambient temperature and humidity, hydrogen humidity, cell orientation on the performance of air breathing PEM fuel cell stack was analyzed using a computerized fuel cell test station. Then, the fuel cell stack was subjected to different load conditions. It was found that the stack performs very poorly at full capacity (runs only for 30 min. but runs for 3 hours at 50% capacity). Hence, a detailed study was undertaken to maximize the duration of the stack's performance at peak load.
机译:未来排放自由电源的答案是燃料电池的形式,它将氢气和氧气产生电和由产物水的无害。质子交换膜(PEM)燃料电池是汽车应用的理想选择。单个单元格不能为任何应用提供基本的功率。因此,使用PEM燃料电池堆。不同操作参数的效果即:对流类型,草稿类型,氢气流速,氢气入口压力,环境温度和湿度,氢气湿度,使用计算机化燃料分析了空气呼吸PEM燃料电池堆的性能的细胞取向细胞测试站。然后,对燃料电池堆进行不同的负载条件。发现堆叠的全部能力非常差(仅运行30分钟,但在50%的容量下运行3小时)。因此,进行了详细的研究,以最大化堆叠在峰值负荷时性能的持续时间。

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