DocumentCode :
728020
Title :
Temperature-dependent multiscale-dynamics in Lithium-ion battery electrochemical models
Author :
Arunachalam, Harikesh ; Onori, Simona ; Battiato, Ilenia
Author_Institution :
Automotive Eng. Dept., Clemson Univ., Greenville, SC, USA
fYear :
2015
fDate :
1-3 July 2015
Firstpage :
305
Lastpage :
310
Abstract :
In a Lithium-ion battery, the relative importance between the three microscale transport processes, i.e. diffusion, electromigration and heterogeneous reaction, can be quantified using the dimensionless Electric Péclet (Pe) and Damköhler (Da) numbers. By means of homogenization technique, we upscale the pore-scale Poisson-Nernst-Planck equation to the macroscopic scale and formulate a phase diagram in the (Da,Pe)-space that identifies the applicability conditions under which isothermal electrochemical macroscopic models provide an accurate description of the micro-scale dynamics [1]. In this work, we focus on the effect of temperature on macroscale (Newman-type) models´ accuracy for a number of commercially available lithium-ion batteries. We show that macroscopic models are able to accurately represent pore-scale dynamics only within specific temperature bounds and their veracity is strongly controlled by the battery operating temperature conditions.
Keywords :
Poisson equation; electrochemical analysis; electromigration; phase diagrams; secondary cells; Da Pe-space; Damkohler number; Newman-type model; diffusion process; dimensionless electric Péclet; electromigration; heterogeneous reaction; homogenization technique; isothermal electrochemical macroscopic model; lithium-ion battery; microscale dynamics; microscale transport process; phase diagram; pore-scale Poisson-Nernst-Planck equation; pore-scale dynamics; temperature-dependent multiscale-dynamics; Batteries; Cathodes; Chemistry; Computational modeling; Lithium; Mathematical model;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
American Control Conference (ACC), 2015
Conference_Location :
Chicago, IL
Print_ISBN :
978-1-4799-8685-9
Type :
conf
DOI :
10.1109/ACC.2015.7170753
Filename :
7170753
Link To Document :
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