首页> 外文会议>International Conference on Materials Science and Information Technology >Designing Fire Scenarios for Subway Stations and Tunnels Based on Regional Approach
【24h】

Designing Fire Scenarios for Subway Stations and Tunnels Based on Regional Approach

机译:基于区域方法的地铁站和隧道设计火灾情景

获取原文

摘要

Development of cities as well as population growth causes to development of public transportation especially subway lines. The high capacity besides the high speed in transportation makes them the popular transportation system. Fire is the one of the most important issues that may occur in subways. The difference in flame size, emissionheat, smoke and pollutants generation of subway fires attracts an especial attention of fire investigators. The emergency ventilation of subways in the case of fire should have the ability of discharging heat, smoke and pollutants from passenger escape route and preparing a safe place for a specific duration. The optimal performance of emergency ventilation system has a close relation with fire scenarios, In this research the fire scenarios of Tehran subway are designed based on regional approach, In order to show the performance of ventilation systems in emergency mode, the fire scenarios are simulated using computational fluid dynamics. Simulations are conducted for steady and unsteady modes, In transient simulations, a fast t2 growth curve is used for the heat and smoke release rate. Simulation results show that new regional scenarios could provide safe escape routes to evacuate passengers during the fire.
机译:城市的发展以及人口增长导致公共交通的发展,特别是地铁线。除了高速运输之外的高容量使其成为流行的运输系统。火是地铁中可能发生的最重要问题之一。火焰大小,散发,烟雾和污染物的地铁火灾的差异吸引了消防调查人员的特殊关注。在火灾情况下,地铁的紧急通风应具有从乘客逃生路线释放热量,烟雾和污染物的能力,并为特定持续时间准备安全的地方。应急通风系统的最佳性能与火灾情景有着密切的关系,在这项研究中,德黑兰地铁的火灾情景是基于区域方法设计的,为了展示应急模式的通风系统的性能,模拟了火灾情景计算流体动力学。在瞬态仿真中进行稳定和不稳定模式进行模拟,快速T2生长曲线用于热量和烟雾释放速率。仿真结果表明,新的区域情景可以提供安全的逃生路线,以在火灾中疏散乘客。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号