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 ›› 2025, Vol. 44 ›› Issue (7): 911-916.

• • 上一篇    下一篇

上盖综合利用地铁车辆基地自然排烟系统有效性热烟试验研究

欧明辉1, 任彤2   

  1. (1.福建省消防救援总队,福建 福州 350001; 2.厦门市公共安全技术服务有限公司,福建 厦门 361001)
  • 收稿日期:2025-02-20 修回日期:2025-04-21 出版日期:2025-07-24 发布日期:2025-07-15
  • 作者简介:欧明辉,福建省消防救援总队防火监督处,高级专业技术职务,专业技术七级,主要从事消防监督管理、防火技术研究和消防技术服务管理工作,福建省福州市鼓楼区北二环西路196号,350001,914799613@qq.com。

Study on the effectiveness of natural smoke exhaust system in subway vehicle base with overhead comprehensive development project

Ou Minghui1, Ren Tong2   

  1. (1. Fujian Fire and Rescue Brigade, Fuzhou Fujian 350001, China; 2. Xiamen Public Safety Technology Service Co., Ltd., Xiamen Fujian 361001, China)
  • Received:2025-02-20 Revised:2025-04-21 Online:2025-07-24 Published:2025-07-15

摘要: 针对上盖综合利用地铁车辆基地这种创新的建筑形式,通过开展热烟试验,在1.5 MW试验火源下分析地铁车辆基地不同功能区域(列检区与咽喉区)的火灾烟气蔓延特性和温度场分布关键参数。试验结果表明:在自然排烟模式下,列检区和咽喉区火灾工况产生的烟气均能通过自然排烟口有效排出,烟气层高度始终维持在安全清晰高度以上,火源附近区域能见度保持良好,未受明显影响,表明本研究中的上盖综合利用地铁车辆基地自然排烟系统能够有效保障消防安全。火源位于咽喉区时,烟气易受环境风影响蔓延至库区,建议在库区与咽喉区之间设置挡烟垂壁,以限制烟气扩散,提升库区消防安全性能。对狭长空间采用加密排烟口布置方案,以优化排烟效率。将排烟口优先布置在主导风向下游位置,以降低环境风对排烟效率的不利影响。

关键词: 地铁车辆基地, 自然排烟, 热烟试验, 温度分布

Abstract: Aiming at the innovative architectural form of subway vehicle base with overhead comprehensive development project, this study investigates the smoke spread patterns and temperature distribution under a 1.5 MW test fire source in different functional areas (the inspection area and the throat area) of subway vehicle base through hot smoke tests. The experimental results show that: Under the natural smoke exhaust mode, the smoke generated in the fire scenarios of the train inspection area and the throat area can be effectively discharged through the natural smoke exhaust openings. The height of the smoke layer is always maintained above the safe clear height, and the visibility in the area near the fire source remains good without being significantly affected. This indicates that the natural smoke exhaust system of the metro vehicle base with overhead comprehensive development project in this study can effectively ensure fire safety. When the fire source is located in the throat area, smoke tends to spread to the depot side under the influence of environmental wind. It is recommended to install smoke barriers between the depot and the throat area to limit smoke diffusion and enhance the fire safety performance of the depot. Adopt a denser layout of smoke exhaust vents in elongated spaces to optimize smoke extraction efficiency. Prioritize the placement of smoke exhaust vents at the downstream position of prevailing wind direction to mitigate the adverse effects of environmental wind on exhaust performance.

Key words: subway vehicle base, natural smoke exhaust, hot smoke test, temperature distribution