...
首页> 外文期刊>International Journal of Ventilation >CFD-Aided Tenability Assessment of Railway Tunnel Train Fire Scenarios
【24h】

CFD-Aided Tenability Assessment of Railway Tunnel Train Fire Scenarios

机译:CFD辅助的铁路隧道列车火灾场景的延性评估

获取原文
获取原文并翻译 | 示例
           

摘要

Five fire scenarios have been simulated with the CFD model Fire Dynamics Simulator (FDS) to analyse the performance-based fire safety design of a 2935 m-long railway tunnel. The influence of tunnel longitudinal ventilation fan activation time, fire size and the type of burning materials on tunnel tenability was investigated based on variations of two primary scenarios: Scenario #1 assumed a 15 MW fire at the front end of a train, and Scenario #2 assumed a 15 MW fire at the rear of a train. In both scenarios the burning material was assumed to be predominantly polyurethane, and tunnel fans were assumed to activate 901 seconds after fire initiation. Scenario #3 was a variation of Scenario #1 with the dominant burning material changed to wood; Scenario #4 was a variation of Scenario #2 which assumed that fans activated 180 seconds after fire initiation; and Scenario #5 was a 6 MW fire, which was scaled down from the 15 MW fire of Scenario #1. For all of the scenarios, a reversible bi-directional ventilation strategy was implemented, and the worst wind condition was considered. The burning materials (polyurethane and wood) were assumed to generate a soot rate of 10 percent and 1 percent per unit weight of fuel respectively. Maximum tenable time (known as Available Safe Egress Time, ASET hereafter) was computed based on a visibility limit of 10 m at a height of 2.1 m. CFD virtual realisation results showed that the fire heat release rate, type of dominant burning material and the activation time of Smoke Management Systems (SMS) fans all influence tenability times within the tunnel. It is suggested that all these factors must be considered in the performance-based fire safety design and the accident management of a tunnel.
机译:使用CFD模型“火灾动态模拟器”(FDS)模拟了五种火灾情况,以分析基于性能的2935 m长的铁路隧道的消防安全设计。基于以下两种主要情况的变化,研究了隧道纵向通风风扇的激活时间,火势和燃烧材料的类型对隧道延性的影响:场景1假设火车前端发生15 MW火灾,场景1 2假定火车尾部发生15兆瓦的火灾。在这两种情况下,假定燃烧的材料主要是聚氨酯,并且假定隧道风扇在起火后901秒启动。方案3是方案1的变体,主要燃烧材料变为木材。方案4是方案2的变体,其中假定风扇在着火后180秒启动。方案5是6兆瓦的火,而方案1是15兆瓦的火。对于所有情况,都采用了可逆的双向通风策略,并考虑了最恶劣的风况。假定燃烧的材料(聚氨酯和木材)每单位重量燃料产生的烟灰率分别为10%和1%。根据在2.1 m高度处10 m的可见性限制,计算了最大可保留时间(以下称为“可用安全出口时间”,以下称为ASET)。 CFD虚拟实现结果表明,火灾的热释放速率,主要燃烧材料的类型以及烟雾管理系统(SMS)风扇的激活时间均会影响隧道内的延性时间。建议在基于性能的消防安全设计和隧道事故管理中必须考虑所有这些因素。

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