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Modeling and simulation of 2D lithium-ion solid state battery

Title
Modeling and simulation of 2D lithium-ion solid state battery
Author(s)
Bates, AlexMukherjee, SantanuSchuppert, NicholasSon, ByungrakKim, Joo GonPark, Sam
Issued Date
2015-09
Citation
International Journal of Energy Research, v.39, no.11, pp.1505 - 1518
Type
Article
Author Keywords
Solid state battery (SSB)2D simulationtime-dependent simulation
Keywords
Simulation ApproachSolid ElectrolytesSolid State BatteriesSolid State Battery (SSB)Solid State DevicesElectrochemical ReactionsHeat FluxHeat TransferHYBRID-ELECTRIC VEHICLESIonsLithiumLithium-Ion BatteriesLithium AlloysMANAGemENTModel and SimulationNEGATIVE ELECTRODESOPERATING-CONDITIONSOVERCHARGE REACTIONPositive ElectrodesPOWERSecondary BatteriesTemPERATURETime-Dependent SimulationTime Dependent Simulation2D Simulation2D SimulationsCATHODECELLConductive MaterialsEffects of MaterialsElectric BatteriesElectric Discharges
ISSN
0363-907X
Abstract
The goal of the work presented here was to develop a simulation approach for studying the effects of materials and geometry on the performance of Li-ion Solid State Batteries (SSB). Simulation provides the opportunity to explore, with ease, different material properties and cell geometries to optimize a Li-ion SSB's performance. Simulations shown in this paper are time-dependent and consider electrochemical reaction, heat transfer, the diffusion of Li-ions and electrons in the electrolyte, and solid Li diffusion in the positive electrode. A 2D model was simulated and the results shown. The simulations were able to show discharge curves, heat flux, the concentration of Li-ions, electrons, and solid Li at any time in the discharge cycle. © 2015 John Wiley & Sons, Ltd.
URI
http://hdl.handle.net/20.500.11750/5174
DOI
10.1002/er.3344
Publisher
Wiley Blackwell
Related Researcher
  • 손병락 Son, Byungrak 에너지환경연구부
  • Research Interests 연료전지; Fuel Cell; 하이브리드 전원; Hybrid Power; 스택; Stack; 촉매; Catalyst; 연료전지시스템; Fuel Cell System;센서네트워크;Sensor Network
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Appears in Collections:
Division of Energy Technology 1. Journal Articles
Convergence Research Center for Wellness 1. Journal Articles

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