The Monthly Newsletter of IEEE Vehicular Technology Society—June 2020

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From the IEEE Open Journal of Vehicular Technology
Thermal Management of Li-Ion Batteries
David W. Sundin and Sebastian Sponholtz

Full title: Thermal Management of Li-Ion Batteries with Single-Phase Liquid Immersion Cooling

Development of effective thermal management techniques is essential in enabling further technical advances and wide public acceptance of lithium-ion based battery electrical storage. Both stationary battery arrays and electric vehicle (EV) batteries are pressed to enable charging and discharging at faster C rates, increased amp-hour capacity, longer service life and increased safety.

All of these are dependent on more efficient and safer thermal management solutions. Traditional air cooling and indirect liquid cooling (cold plate) methods have limitations in effectiveness and weight.

Engineered Fluids has recently completed a series of experiments demonstrating the high efficiency of Single-phase Liquid Immersion Cooling (SLIC) technology for the thermal management of Li-ion batteries.

This article reviews the results of these experiments and discusses some of the issues and solutions for battery thermal management, and outlines the proper design of battery thermal management systems.

We will discuss such topics as active cooling versus passive cooling, liquid cooling versus air cooling, cooling and heating versus cooling only systems, and relative needs of thermal management for VRLA, NiMH, and Li-Ion batteries.

Full Article: IEEE Open Journal of Vehicular Technology, Volume 1, February 2020

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In This Issue
Message from the EiC
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Message from the President
Looking Towards a Greater Future
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Message from the Vice President—Land Transportation
Seeking Volunteers: Land Transportation Projects
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Society
Recent Activities in VTS Standards
VTS Chapter Profile: Chicago
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From the IEEE VTS Resource Center
Electrified Vehicle Technologies
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From the IEEE Open Journal of Vehicular Technology
Thermal Management of Li-Ion Batteries
Scheduling Framework for Autonomous UAVs
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Editor-in-Chief

F. Richard Yu

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