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The Dynamic Modeling of PEMFC System for Automotive Application

机译:汽车应用PEMFC系统的动态建模

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摘要

Water and thermal management are crucial factors in determining the performance of PEMFC for automotive application. In order to investigate the effect of cell humidity and temperature on the performance of PEMFC, a dynamic model of a PEMFC system for automotive application has been developed by using Matlab/Simulink®. The model is composed of a PEM unit cell, membrane humidifier, and thermal management system (TMS). At first, fuel and air are well hydrated by the shell and tube humidifier, then humidified fuel and air flow into the PEMFC for electrochemical reaction. PEMFC temperature was maintained at a constant level by the thermal management system. The active area of PEM model is 240 cm~2. The cell was discretized into several control volumes in the through-plane to resolve energy balance and species diffusion. The membrane humidifier model is also discretized into three control volumes in the through-plane to resolve the mass conservation and energy balance. Fuel and air are hydrated by the diffusion of the water through the membrane. The thermal management system consists of radiator, fan and pump. De-ionized water cools down the temperature of PEMFC.rnIn order to validate the model, the model was compared with a corresponding experiment. Comparison shows that simulation results are in good agreement with experiments. And the dynamic response of PEMFC with regard to the change of current was also investigated. The model is useful to elucidate the relationships between operating conditions such as air relative humidity, temperature, etc. It is expected that this dynamic modeling of PEMFC system can contribute to the design optimization of PEM fuel cell system for vehicle application.
机译:水和热管理是决定PEMFC在汽车应用中性能的关键因素。为了研究电池湿度和温度对PEMFC性能的影响,已经通过使用Matlab /Simulink®开发了用于汽车应用的PEMFC系统的动态模型。该模型由PEM晶胞,膜加湿器和热管理系统(TMS)组成。首先,壳管式加湿器使燃料和空气充分水合,然后加湿的燃料和空气流入PEMFC中进行电化学反应。通过热管理系统将PEMFC温度保持在恒定水平。 PEM模型的活动区域为240 cm〜2。将该电池离散化为贯穿平面中的几个控制体积,以解决能量平衡和物质扩散的问题。膜式加湿器模型还离散化为贯穿平面中的三个控制体积,以解决质量守恒和能量平衡的问题。燃料和空气通过水通过膜的扩散而水合。热管理系统由散热器,风扇和泵组成。用去离子水冷却PEMFC的温度。为了验证模型,将模型与相应的实验进行了比较。比较表明,仿真结果与实验吻合良好。并研究了PEMFC对电流变化的动态响应。该模型对于阐明操作条件(例如空气相对湿度,温度等)之间的关系很有用。可以预期,PEMFC系统的这种动态建模可以为车辆应用的PEM燃料电池系统的设计优化做出贡献。

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