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首页> 外文期刊>Journal of the Chinese Society of Mechanical Engineers, Series C: Transactions of the Chinese Society of Mechanical Engineers >Modeling and Analysis of Thermal-management Impacts on Transient Performances of PEM Fuel Cells
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Modeling and Analysis of Thermal-management Impacts on Transient Performances of PEM Fuel Cells

机译:热管理对PEM燃料电池瞬态性能影响的建模和分析

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The characterization of transient performance is necessary in the design, control and diagnosis of PEM (proton-exchange membrane) fuel cells. The operating temperature of the fuel cell plays a very important role in the middle- and long-term cell dynamics, and the impacts of a thermal management system must be considered. This study focused on the modeling and analysis of the system-level cell dynamics, which have a close relationship with the operating temperature and the cooling conditions of fuel-cell modules. Mathematical models were established by modeling the energy-conversion phenomena inside the fuel-cell stack and the heat-dissipation process by the thermal-management system. The output equations for the calculation of the electrical power and voltage were additionally deduced from electrochemical theory. Four typical disturbances, including step changes in electric current, coolant flow rate, the cooler's external thermal resistance and the temperature of the ambient air were numerically investigated to evaluate the transient performances of a PEM fuel cell in which the cooling load and cooling ability of its thermal-management system were varied. The results demonstrated that the impacts of the exhaust heat and the cooling conditions on the transient performance of a PEM fuel cell are significant and deserve more attention.
机译:在PEM(质子交换膜)燃料电池的设计,控制和诊断中,瞬态性能的表征是必要的。燃料电池的工作温度在中长期电池动力学中起着非常重要的作用,必须考虑热管理系统的影响。这项研究集中于系统级电池动力学的建模和分析,这些动力学与燃料电池模块的工作温度和冷却条件密切相关。通过对燃料电池堆内部的能量转换现象和热管理系统的散热过程进行建模,建立了数学模型。此外,根据电化学理论推导了用于计算电功率和电压的输出方程。数值研究了四个典型的扰动,包括电流的阶跃变化,冷却液流量,冷却器的外部热阻和环境空气的温度,以评估PEM燃料电池的瞬态性能,其中PEM燃料电池的冷却负荷和冷却能力热管理系统各不相同。结果表明,废热和冷却条件对PEM燃料电池瞬态性能的影响是显着的,应引起更多关注。

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