A Simple Model Predicting Transient Thermal Management of PEMFC and Cooling System

J. Jang
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引用次数: 4

Abstract

A simple model is developed to predict the dynamic temperature variations of PEMFC (proton exchange membrane fuel cell) and its cooling system for automotive applications. A lumped heat capacity method (LHCM) is used to model, but the governing equations for the fuel cell stack, radiator, cooling water, and air are conjugated. The model predicts the transient temperatures of the fuel cell stack, radiator, cooling water, and air for stepwise power changes. Parametric studies show that the increase in the heat transfer coefficient of the cooling water at the radiator is more effective to cool the fuel cell than that at the fuel cell. The increase of the air flow rate at the radiator decreases the operating temperature of the system. This simple model could be a useful tool to decide the dimension of each component of the system for required power.
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一个预测PEMFC及冷却系统瞬态热管理的简单模型
建立了一个简单的模型来预测汽车用质子交换膜燃料电池及其冷却系统的动态温度变化。模型采用集总热容法(LHCM),但燃料电池堆、散热器、冷却水和空气的控制方程是共轭的。该模型预测了燃料电池堆、散热器、冷却水和空气的瞬态温度。参数化研究表明,增加散热器处冷却水的换热系数比增加燃料电池处的换热系数更能有效地冷却燃料电池。散热器处空气流量的增加降低了系统的工作温度。这个简单的模型可能是一个有用的工具,可以决定系统中每个组件的尺寸,以满足所需的功率。
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