主管:中华人民共和国应急管理部
主办:应急管理部天津消防研究所
ISSN 1009-0029  CN 12-1311/TU

消防科学与技术 ›› 2026, Vol. 45 ›› Issue (9): 119-125.

• • 上一篇    下一篇

大孔径气水旋转射流高倍阻化泡沫灭火特性试验研究

汪涵仪, 马中飞   

  1. (江苏大学 环境与安全工程学院,江苏 镇江 212013)
  • 收稿日期:2025-04-29 修回日期:2025-08-18 出版日期:2026-09-15 发布日期:2026-09-15
  • 作者简介:汪涵仪,江苏大学环境与安全工程学院硕士研究生,主要从事气水射流灭火研究,江苏省镇江市京口区学府路301号,212013。
  • 基金资助:
    安徽省重点研究与开发计划(202004g01020011);江苏大学应急管理学院专项科研项目(KY-A-06)

Experimental study on fire extinguishing characteristics of high expansion retardant foam with a large aperture air-water swirl jet

Wang Hanyi, Ma Zhongfei   

  1. (School of the Environment and Safety Engineering, Jiangsu University, Zhenjiang Jiangsu 212013, China)
  • Received:2025-04-29 Revised:2025-08-18 Online:2026-09-15 Published:2026-09-15

摘要: 现有高倍泡沫灭火技术使用中仍存在若干问题,灭火效果有待提升。为此,本文提出了现场无电源的大孔径气水旋转射流高倍阻化泡沫灭火技术,分析了其工作原理,进行了泡沫灭火剂成分优选试验、气水射流发泡器内部参数优化试验、阻化剂浓度优化试验以及不同压气类发泡器泡沫灭液体火对比试验。结果表明,泡沫灭火剂成分配比、发泡器型式、气水射流发泡器结构参数、阻化剂浓度等因素均会影响发泡灭火性能;十二烷基硫酸钠与仲烷基磺酸钠的质量比为5:3、椰油单乙醇酰胺质量浓度为1.5 g/L时,发泡性能最优;当压气流量为18 m3/h、喷嘴孔径为10 mm、采用2#射流管、喉嘴距为250 mm、发泡网目数为12目时,发泡性能最优;阻化剂质量浓度为8 g/L时,灭火效果最好;大孔径气水旋转射流发泡器发泡灭火性能指标比均优于小孔径气水射流发泡器、压缩空气发泡器,灭火效果更佳。

关键词: 气水旋转射流, 压缩空气高倍数泡沫, 大孔径, 阻化, 灭液体火特性

Abstract: Existing high-expansion foam fire extinguishing technology still faces several challenges and its effectiveness needs improvement. To address this, this paper proposes a large-aperture air-water swirling jet high-expansion retardant foam fire extinguishing technology that requires no on-site power supply. Its working principle is analyzed, and experiments were conducted on foam extinguishing agent component optimization, internal parameter optimization of the air-water jet foam generator, retardant concentration optimization, and comparative tests of liquid fire extinguishing using different air-driven foam generators. The results indicate that the foam extinguishing performance is influenced by the composition ratio of the foam agent, the type of foam generator, the structural parameters of the air-water jet foam generator, and the concentration of the retardant. Optimal foaming performance was achieved with a mass ratio of 5:3 of Sodium Dodecyl Sulfate (SDS) to Sodium Secondary Alkyl Sulfonate (SAS) and a mass concentration of 1.5 g/L for Coconut Monoethanol Amide (CMEA). For the air-water jet foam generator, the optimal foaming performance occurred at a compressed air flow rate of 18 m³/h, a nozzle aperture of 10 mm, using the No. 2 jet tube, a throat-to-nozzle distance of 250 mm, and a foam mesh size of 12 mesh. The optimal fire extinguishing performance was obtained at a retardant mass concentration of 8 g/L. Comparative tests demonstrated that the large-aperture air-water swirling jet foam generator outperformed both the small-aperture air-water jet foam generator and the compressed air foam generator in all foaming and fire extinguishing performance indicators, achieving superior fire suppression effectiveness.

Key words: air-water swirl jet, compressed air high-expansion foam, large aperture, retardation, liquid fire extinguishing characteristics