An isothermal porous-electrode model of a discharging lead-acid battery is presented, which includes an extension of concentrated-solution theory that accounts for excluded-volume effects, local pressure variation, and a detailed microscopic water balance. The approach accounts for three typically neglected physical phenomena: convection, pressure diffusion, and variation of liquid volume with state of charge. Rescaling of the governing equations uncovers a set of fundamental dimensionless parameters that control the battery's response. Total volume change during discharge and nonuniform pressure prove to be higher-order effects in cells where variations occur in just one spatial dimension. A numerical solution is developed and exploited to...
Dividing the soluble lead flow battery (SLFB) is known to improve the cycle life of the SLFB by prev...
A two-dimensional mathematical model of the lead-acid cell that details nonuniformities along cell h...
A simple mathematical model is presented and used to analyze the potential and current distributions...
An isothermal porous-electrode model of a discharging lead-acid battery is presented, which includes...
Electrochemical and equivalent-circuit modelling are the two most popular approaches to battery simu...
Electrochemical and equivalent-circuit modeling are the two most popular approaches to battery simul...
The soluble lead-acid battery is a redox flow cell that uses a single reservoir to store the electro...
A mathematical model of a lead-acid cell is presented which includes the modeling of porous electrod...
A mathematical model of a starved lead-acid cell has been developed to study the dynamic behavior of...
In this paper, we develop a mathematical model for soluble lead redox flow battery. The model accoun...
This thesis describes a two-dimensional numerical model, based on the conservation of mass, charge, ...
Non-isothermal two-dimensional transient model for a soluble lead-acid flow battery is developed, in...
A two-dimensional mathematical model is presented for a lead dioxide electrode in a lead-acid cell. ...
The effect of convective mass transfer in electrolyte solution on the lead-acid battery performance ...
A mathematical model of a starved lead-acid cell has been developed to study the dynamic behavior of...
Dividing the soluble lead flow battery (SLFB) is known to improve the cycle life of the SLFB by prev...
A two-dimensional mathematical model of the lead-acid cell that details nonuniformities along cell h...
A simple mathematical model is presented and used to analyze the potential and current distributions...
An isothermal porous-electrode model of a discharging lead-acid battery is presented, which includes...
Electrochemical and equivalent-circuit modelling are the two most popular approaches to battery simu...
Electrochemical and equivalent-circuit modeling are the two most popular approaches to battery simul...
The soluble lead-acid battery is a redox flow cell that uses a single reservoir to store the electro...
A mathematical model of a lead-acid cell is presented which includes the modeling of porous electrod...
A mathematical model of a starved lead-acid cell has been developed to study the dynamic behavior of...
In this paper, we develop a mathematical model for soluble lead redox flow battery. The model accoun...
This thesis describes a two-dimensional numerical model, based on the conservation of mass, charge, ...
Non-isothermal two-dimensional transient model for a soluble lead-acid flow battery is developed, in...
A two-dimensional mathematical model is presented for a lead dioxide electrode in a lead-acid cell. ...
The effect of convective mass transfer in electrolyte solution on the lead-acid battery performance ...
A mathematical model of a starved lead-acid cell has been developed to study the dynamic behavior of...
Dividing the soluble lead flow battery (SLFB) is known to improve the cycle life of the SLFB by prev...
A two-dimensional mathematical model of the lead-acid cell that details nonuniformities along cell h...
A simple mathematical model is presented and used to analyze the potential and current distributions...