首页> 外文会议>2016 XVI International Congress of the Mexican Hydrogen Society >Study of the dynamics of a four-module fuel cell stack to be integrated in a hybrid electric power plant of a utility vehicle
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Study of the dynamics of a four-module fuel cell stack to be integrated in a hybrid electric power plant of a utility vehicle

机译:研究将要在多功能车的混合动力装置中集成的四模块燃料电池堆的动力学

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A four-module PEM fuel cell stack was electrochemically characterized prior to its incorporation to a hybrid power plant of an electrical utility vehicle. The 3 kW fuel cell stack, comprised of 4 units of 100 membrane electrode assemblies (MEAs) in an open-cathode and air-cooled configuration, was characterized in order to identify its optimum operational parameters. The open cathode configuration is a common approach to reduce parasitic loads and increase energy efficiency in fuel cells; however, the forced convection derives frequently to internal dehydration. Voltage reversal caused by lack of reactants, many times due to dehydration at the reaction sites (membrane-electrode interface) is a common failure source for this kind of configuration especially at high current demands. Therefore, water management becomes crucial for preventing fuel cell's performance decrease and permanent failure. Subsequently, a smart water management strategy had to be established prior to the power plant integration into the vehicle for the fuel cell's performance to be guaranteed during the vehicle duty cycle. For this purpose, a testing protocol was established for testing each module based on linear voltammetries, electrochemical impedance spectroscopy and thermal images in order to observe cell's voltage and resistance as indicators of internal hydration, reactants concentration, and heat distribution during the stack operation. Polarization curves were obtained for each module and from them, the point (voltage, current, temperature and air vent) for steady operation was identified as the recommended condition for nominal performance during the fuel cell operation in the hybrid power plant of the electrical vehicle.
机译:在将四模块PEM燃料电池堆结合到电动汽车的混合动力装置中之前,对其进行了电化学表征。为了确定其最佳运行参数,对3 kW燃料电池堆进行了表征,该燃料电池堆由4个100个膜电极组件(MEA)组成,采用开放式阴极和风冷配置。开放式阴极配置是减少寄生负载并提高燃料电池能效的常用方法。但是,强制对流经常是由于内部脱水造成的。由于缺少反应物而导致的电压反转,这是由于反应部位(膜-电极界面)脱水而导致的许多次,是这种配置的常见故障源,尤其是在高电流需求下。因此,水管理对于防止燃料电池性能下降和永久性故障至关重要。随后,必须在将动力装置集成到车辆中之前建立智能水管理策略,以确保在车辆工作周期内燃料电池的性能。为了这个目的,建立了用于基于线性伏安法,电化学阻抗谱和热图像测试每个模块的测试协议,以便观察电池的电压和电阻,作为内部水化,反应物浓度和堆操作期间热量分布的指标。获得每个模块的极化曲线,并从中获得稳定运行的点(电压,电流,温度和通风口),作为在电动汽车混合动力工厂中燃料电池运行期间标称性能的推荐条件。

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