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Modeling and characterization of a lead-acid cell.

机译:铅酸电池的建模和表征。

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A mathematical model of a lead-acid cell is developed to study the dynamic behavior of the cell during discharge, rest, and charge. Concentrated binary electrolyte theory and a volume-averaging technique are used to model the transport of electrolyte in the porous electrodes and separator. The model is used to predict profiles of acid concentration, overpotential, porosity, reaction rate, and electrode capacity as functions of time. The model is also used to evaluate the effects of design parameters such as electrode porosity, electrode thickness, separator thickness, and acid reservoir volume and operating temperature on the discharge and charge performance of a lead-acid cell.; A parameter estimation procedure is developed to allow single-electrode models of the positive and negative electrodes to be used along with experimental results to obtain values of the kinetic parameters, which are needed for the cell model. This parameter estimation approach provides a direct way of obtaining values of the kinetic parameters of porous electrodes such as the effective exchange current densities, {dollar}asb{lcub}max{rcub}isb{lcub}o,ref{rcub}{dollar}'s, which can not be obtained with conventional methods using planar electrodes. Finally, the model and the approach used in deriving the governing equations can be used to model other battery fuel cells systems where porous electrodes are utilized.
机译:开发了铅酸电池的数学模型,以研究电池在放电,静止和充电期间的动态行为。浓缩二元电解质理论和体积平均技术用于模拟多孔电极和隔板中电解质的传输。该模型用于预测酸浓度,超电势,孔隙率,反应速率和电极容量随时间变化的曲线。该模型还用于评估设计参数的影响,例如电极孔隙率,电极厚度,隔板厚度,储酸池体积和工作温度对铅酸电池的放电和充电性能的影响。开发了参数估计程序,以允许将正电极和负电极的单电极模型与实验结果一起使用,以获得电池模型所需的动力学参数值。这种参数估计方法提供了一种获取多孔电极动力学参数值的直接方法,例如有效的交换电流密度{asb {lcub} max {rcub} isb {lcub} o,ref {rcub} {dollar}这是使用平面电极的常规方法无法获得的。最后,用于推导控制方程式的模型和方法可用于对其他利用多孔电极的电池燃料电池系统进行建模。

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