磷酸铁锂储能预制舱火灾烟气扩散及温度变化规律
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TM912

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国家自然科学基金资助项目(52277144);湖北省自然科学基金资助项目(2022CFB863,2023AFB956)


The change rule of smoke dispersion and temperature evolution in fires within lithium iron phosphate energy storage prefabricated cabin
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Natural Science Foundation of Hubei Province (2022CFB863), National Natural Science Foundation of China (52277144), Natural Science Foundation of Hubei Province (20221CFA025)

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    摘要:

    随着电化学储能的大规模应用,储能预制舱安全问题日益突出。对储能预制舱内不同热失控位置下的储能预制舱火灾差异进行研究,可以帮助设计更有效的监测和灭火系统,提升储能预制舱安全性能。因此,模拟研究不同热失控位置下储能预制舱火灾烟气扩散及温度变化规律具有重要意义。文中基于直接数值模拟和大涡模拟方法,依据实际储能预制舱尺寸构建磷酸铁锂储能预制舱的数值模型,引入更符合火情发展的t2模型,通过模拟不同热失控位置的火灾情境,研究储能预制舱内烟气扩散和温度变化规律。仿真结果表明,热失控的位置不同,烟气具有不同的动态行为,热失控位置越靠近底层,烟气运动越快,充满储能预制舱时间越短。当热失控位置靠近舱顶,在高度1.85 m以上的区域温度较高,并伴随显著的温度波动时,储能预制舱水平方向上的温度差显著增大。文中进一步分析额定容量为1.2 MW·h的标准储能预制舱的灭火系统设计方案,发现全氟己酮灭火系统在喷淋强度为20 L/(min·m2)、喷淋角度为120°、全氟己酮灭火剂粒径大小为50 μm时,能有效控制火灾,减少火灾造成的损害。文中的研究成果可为储能预制舱内监测预警装置分布式布署策略及消防安全设计提供理论指导。

    Abstract:

    With the large-scale application of electrochemical energy storage,the safety of energy storage prefabricated cabin has become increasingly prominent. The study of the differences in energy storage prefabricated cabin fires under different thermal runaway positions in the energy storage prefabricated cabin can help to design more effective monitoring and fire extinguishing systems,and to improve the safety performance of the energy storage prefabricated cabin. Therefore,it is of great significance to simulate and study the change rule of smoke dispersion and temperature evolution in energy storage prefabricated cabin under different thermal runaway positions. Based on direct numerical simulation and vortex simulation,a numerical model of lithium iron phosphate energy storage prefabricated cabin based on the size of the actual energy storage prefabricated cabin is studied,and the t2 model which is more in line with the development of the fire situation compared with the stable fire model,and investigated the change rule of the smoke dispersion and temperature inside the prefabricated cabin by simulating the fire situation with different thermal runaway positions. The simulation results demonstrate that smoke displays distinct dynamic behaviors depending on the thermal runaway positions within the energy storage prefabricated cabin. When thermal runaway positions occur closer to the bottom,smoke exhibits swifter movement and the cabin fills up in a shorter time. Additionally,as the thermal runaway positions above 1.85 meters approach the top,accompanied by significant temperature fluctuations. Notably,there is a noticeable amplification in the temperature disparity along the horizontal axis of the energy storage prefabricated cabin. Moreover,the design scheme of the fire extinguishing system for a standard energy storage prefabricated cabin with a rated capacity of 1.2 MW·h is analyzed. This perfluorohexane fire extinguishing system,with a sprinkler intensity of 20 L/(min·m2), a sprinkler angle of 120ånd a particle size of 50 μm,can successfully controls fires and mitigates fire damage. The research results in the article can provide theoretical guidance for the distributed deployment strategy in energy storage prefabricated cabin and fire safety design of monitoring and warning devices.

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张引,秦超群,田双双,葛志超,董君,张晓星.磷酸铁锂储能预制舱火灾烟气扩散及温度变化规律[J].电力工程技术,2025,44(1):207-217

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  • 收稿日期:2024-09-12
  • 最后修改日期:2024-11-03
  • 录用日期:2024-07-23
  • 在线发布日期: 2025-01-23
  • 出版日期: 2025-01-28
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