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首页> 外文期刊>Journal of Fuel Cell Science and Technology >Analysis, Modeling, and Validation for the Thermal Dynamics of a Polymer Electrolyte Membrane Fuel Cell System
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Analysis, Modeling, and Validation for the Thermal Dynamics of a Polymer Electrolyte Membrane Fuel Cell System

机译:聚合物电解质膜燃料电池系统热动力学的分析,建模和验证

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摘要

A control-oriented mathematical model of a polymer electrolyte membrane (PEM) fuel cell stack is developed and experimentally verified. The model predicts the bulk fuel cell transient temperature and voltage as a function of the current drawn and the inlet coolant conditions. The model enables thermal control synthesis and optimization and can be used for estimating the transient system performance. Unlike other existing thermal models, it includes the gas supply system, which is assumed to be capable of controlling perfectly the air and hydrogen flows. The fuel cell voltage is calculated quasistatically. Measurement data of a 1.25 kW, 24-cell fuel cell stack with an integrated membrane-type humidification section is used to identify the system parameters and to validate the performance of the simulation model. The predicted thermal response is verified during typical variations in load, coolant flow, and coolant temperature. A first-law control volume analysis is performed to separate the relevant from the negligible contributions to the thermal dynamics and to determine the sensitivity of the energy balance to sensor errors and system parameter deviations.
机译:开发并通过实验验证了聚合物电解质膜(PEM)燃料电池堆的面向控制的数学模型。该模型根据汲取的电流和入口冷却液条件来预测散装燃料电池的瞬态温度和电压。该模型可进行热控制综合和优化,并可用于评估瞬态系统性能。与其他现有的热模型不同,它包括气体供应系统,假定该系统能够完美地控制空气和氢气的流量。准静态计算燃料电池电压。具有集成的膜片式加湿部分的1.25 kW,24单元燃料电池堆的测量数据用于识别系统参数并验证仿真模型的性能。在负载,冷却液流量和冷却液温度的典型变化过程中,可以验证预测的热响应。进行第一定律控制量分析,以将热力学的相关贡献与可忽略的贡献分开,并确定能量平衡对传感器误差和系统参数偏差的敏感性。

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