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Effect of ambient pressure on the fire characteristics of lithium-ion battery energy storage container

As lithium-ion battery energy storage gains popularity and application at high altitudes, the evolution of fire risk in storage containers remains uncertain. In this study, numerical simulation is employed to investigate the fire characteristics of lithium-ion battery storage container under varying...

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Bibliographic Details
Published in:Journal of loss prevention in the process industries 2024-12, Vol.92, p.105459, Article 105459
Main Authors: Wang, Zhi, Song, Yuchen, Yin, Bo, Shi, Bobo, Li, Zhihua, Yu, Jiajia
Format: Article
Language:English
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Summary:As lithium-ion battery energy storage gains popularity and application at high altitudes, the evolution of fire risk in storage containers remains uncertain. In this study, numerical simulation is employed to investigate the fire characteristics of lithium-ion battery storage container under varying ambient pressures. The findings reveal that the peak heat release rate of fires at normal pressure is significantly higher than at lower pressure. Specifically, the heat release rate at 100 kPa is 9215 kW, exceeding the value at 40 kPa by 42%, which is only 3900 kW. This peak heat release rate also demonstrates a power function relationship with ambient pressure. In addition, fires tend to last longer in lower pressure, where high-temperature areas expand and spread rates increase. Moreover, higher pressures produce elevated peak concentrations of CO and CO2, while smoke spreads faster in lower pressure, despite lower peak smoke concentrations. The study findings can serve as a foundation for assessing the fire hazards and designing fire protection measures for lithium-ion battery storage containers exposed to varying ambient pressures. •Pioneering study on fire of LIB energy storage container under varying pressures.•Insights on pressure's impact on fire of LIB energy storage container were given.•The relationship between critical fire parameters and pressure was unlocked.•Provide a reference for fire protection design of energy storage cabin.
ISSN:0950-4230
DOI:10.1016/j.jlp.2024.105459