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TRANSIENT RESPONSE OF POLYMER ELECTROLYTE MEMBRANE FUEL CELL TO VARIATIONS IN OPERATING PARAMETERS

机译:聚合物电解质膜燃料电池对操作参数变化的瞬态响应

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Due to rapid change in loads during automotive applications, study of dynamic behavior of proton exchange membrane (PEM) fuel cells is of paramount importance for their successful deployment in mobile applications. Toward understanding the effects of changes in operating parameters on the transient behavior, this paper presents numerical simulations for a single channel PEM fuel cell undergoing cyclic changes in operating parameters. The objective is to elucidate the complex interaction between power response and complex species (water, hydrogen and oxygen) transport dynamics for applied cyclic changes. This study focuses on studying the transient response of fuel cell for specified changes in operating parameters - voltage, pressure and stoichiometry at the cathode and the anode. Numerical studies are carried out on single-channel PEMFC's to illustrate the response of power as the operating parameters are subjected to specified changes. The operating parameters are further optimized using a one dimensional physics based model with an objective to match the power requirements of a drive cycle over a defined period of time.
机译:由于汽车应用期间负载的快速变化,质子交换膜(PEM)燃料电池的动态行为研究对于他们在移动应用中的成功部署至关重要。为了了解操作参数的变化对瞬态行为的影响,本文提出了对经历操作参数循环变化的单通道PEM燃料电池的数值模拟。目的是阐明功率响应和复杂物种(水,氢气和氧)运输动力学之间的复杂相互作用,用于应用循环变化。本研究侧重于研究燃料电池对阴极和阳极处的操作参数 - 电压,压力和化学计量的指定变化的瞬态响应。在单通道PEMFC上执行数值研究,以说明随着操作参数进行指定变化的功率响应。使用基于一维物理学的模型进一步优化操作参数,其目的是在规定的时间段内匹配驱动周期的功率要求。

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