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 (7): 146-150.

• • 上一篇    

消防水枪液压通风排烟效果研究

张彩莉, 李清钜, 王佩   

  1. (中国消防救援学院,北京 102202)
  • 收稿日期:2025-03-17 修回日期:2025-04-13 出版日期:2026-07-15 发布日期:2026-07-15
  • 作者简介:张彩莉,中国消防救援学院消防指挥系讲师,博士,主要从事消防指挥研究,北京市昌平区南雁路4号,102202。
  • 基金资助:
    国家消防救援局科技计划项目(2023XFCX34);中国消防救援学院院级项目(XFKYB202406)

Research on the smoke extraction effect of the hydraulic ventilation with the water gun

Zhang Caili, Li Qingju, Wang Pei   

  1. (China Fire and Rescue Institute, Beijing 102202, China)
  • Received:2025-03-17 Revised:2025-04-13 Online:2026-07-15 Published:2026-07-15

摘要: 火场排烟对于灭火救援和保障现场人员安全至关重要。液压通风排烟是利用消防水枪喷射出的高速水流卷吸烟气的一种排烟方式,具有灵活性高、无须额外设备等优势,但目前缺乏系统的试验研究和理论支持。本研究聚焦于液压通风排烟技术,采用控制变量法,分别研究水枪到窗口的距离(223~1 437 mm)、开花角度(45°和60°)以及对流情况对排烟效果的影响。利用照度计实时监测烟雾浓度变化,定量评价排烟效率。结果显示,当水枪距窗口667 mm、以不超过窗口面积的最大直径进行射流(即开花角度为60°时),排烟效率最高。试验表明,水枪到窗口的距离、开花角度和对流情况是影响液压通风排烟效果的关键因素,合理优化上述参数可显著提高排烟效率,为火场排烟提供理论支持和实践指导。

关键词: 液压通风排烟, 排烟效率, 消防水枪, 排烟方式

Abstract: Fire smoke extraction is crucial for firefighting and rescue operations as well as for ensuring the safety of personnel on site. Hydraulic ventilation smoke extraction is a method that utilizes high-velocity water jets from fire nozzles to entrain and remove smoke. It offers advantages such as high flexibility and no need for additional equipment; however, systematic experimental research and theoretical support are currently lacking. This study focuses on hydraulic ventilation smoke extraction technology and employs a controlled variable method to investigate the effects of the distance from the nozzle to the window (ranging from 223 mm to 1 437 mm), spray angles (45° and 60°), and convection conditions on smoke extraction performance. A lux meter was used to monitor real-time changes in smoke concentration, enabling quantitative evaluation of smoke extraction efficiency. The results show that the highest smoke extraction efficiency is achieved when the nozzle is positioned 667 mm from the window, with the water jet diameter not exceeding the window area (i.e.,when the spray angle is 60°) . The experimental findings indicate that the nozzle-to-window distance, spray angle, and convection conditions are key factors influencing the effectiveness of hydraulic ventilation smoke extraction. Reasonable optimization of these parameters can significantly improve smoke extraction efficiency, providing theoretical support and practical guidance for smoke extraction in fire scenes.

Key words: hydraulic ventilation smoke extraction, smoke exhaust efficiency, water gun, smoke extraction methods