Heat Generation Rate and Computational Simulation for Li-Ion Battery Module
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Heat Generation Rate and Computational Simulation for Li-Ion Battery Module

Authors: Ravichandra R., Srithar Rajoo, Tan Lit Wen

Abstract:

In recent years Li-Ion batteries getting more attention among the Electrical Vehicles (EV) and Hybrid Electrical Vehicles (HEV) energy storage. Li-Ion has shown extended power density and light weight compared to other batteries readily available in the market. One of the major drawbacks in Li-Ion batteries is their sensitivity to the temperature. If the working temperature is beyond the limit, that could affect seriously on the durability and performance of Li-Ion battery. Thus Battery Thermal Management (BTM) is the most essential in adapting Li-Ion battery to the EVs and HEVs.

Keywords: Li-Ion battery, HEV/EV, battery thermal management, heat generation rate.

Digital Object Identifier (DOI): doi.org/10.5281/zenodo.1335798

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[1] R. T. Doucette, M. D. McCulloch, "A comparison of high-speed flywheels, batteries, and ultracapacitors on the bases of cost and fuel economy as the energy storage system in a fuel cell based hybrid electric vehicle", J. Power Sources 196 (2011) 1163-1170
[2] S. J. Gerssen-Gondelach, A. P.C. Faaij, "Performance of batteries for electric vehicles on short and longer term", J. Power Sources 212 (2012) 111e129
[3] M. Catenacci, E. Verdolini, V. Bosetti, G. Fiorese, "Going electric: Expert survey on the future of battery technologies for electric vehicles" Energy Policy., article in press
[4] A.A. Perasan, "Battery Thermal Management in EVs and HEVs: Issues and Solutions" Adv. Auto. Battery Conference, Las Vegas, February 6- 8,2001
[5] R. Mahamud, "Advanced battery thermal management for electrical-drive vehicles using reciprocating cooling flow and spatial-resolution, lumped capacitance thermal model". ProQuest LLC (2011)
[6] C. Alaoui, "Solid-State Thermal Management for Lithium-Ion EV Batteries", IEEE Transactions On Vehicular TechnologY, Vol. 62, No. 1, January 2013
[7] Eddahech, 0. Briat, J. Vinassa, "Lithium-ion Battery Heat Generation InvestigationBased on Calorimetric Entropy Measurements". Univ. Bordeaux, unpublished
[8] A. A. Pesaran"Battery Thermal Models for Hybrid Vehicle Simulations". Journal of Power Sources. (2002). 110(2):377-82.
[9] A. A. Pesaran, M. Keyser. "Annual Battery Conference: Advances and Applications".Long Beach, California, January 9-12,2001