Sievers, MartinMartinSieversSievers, UweUweSieversMao, Samuel S.Samuel S.Mao2018-11-222018-11-222010-12-01Forschung im Ingenieurwesen/Engineering Research 4 (74): 215-231 (2010-12-01)http://tubdok.tub.tuhh.de/handle/11420/1867The effects of material and design modifications on the temperature distribution of Li-ion cells are simulated numerically. A two-dimensional anisotropic cylindrical coordinate model with linear triangular finite elements is used to simulate the steady-state temperature distribution within the cell. The cell's material and geometry are changed. New cell materials are investigated for thermal performance: a negative electrode of variously-oriented carbon nanotubes, as well as separators made of Separion, of Al 2O3 containing Cr particles or of BeO containing Be and Si particles. The cell's diameter and length are varied. A new cell design with an internal cooling tube is proposed. The effect of cooling tube diameter upon cell temperature and the energy efficiency of cooling are investigated. This simple design change significantly improves the temperature distribution at marginal cost.en1434-0860Forschung im Ingenieurwesen/Engineering Research20104215231Springerhttps://creativecommons.org/licenses/by-nc-nd/3.0/heat transferfree convectionforce convectionnegative electrodecell designTechnikIngenieurwissenschaftenThermal modelling of new Li-ion cell design modificationsJournal Articleurn:nbn:de:gbv:830-882.02370610.15480/882.186411420/186710.1007/s10010-010-0127-y10.15480/882.1864Journal Article