Fire safety in tunnels forming part of critical infrastructure

V. Mózer, A. Osvald, T. Loveček, Adelaida Fanfarová, Lubica Vrablova
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引用次数: 12

Abstract

Road and railway tunnels form vital part of transportation infrastructure as they often represent the only means of crossing a difficult geography. Failure of such critical links may lead to significant disruption to large parts of the transportation system. Due to their enclosed construction they are very vulnerable to fire damage resulting from a terrorist attack or accident. This paper deals with the problem of fire safety in tunnels and the prediction of the effects of a fire on the tunnel construction and the evacuation of the persons inside the tunnel. A realistic worst case fire scenario was modelled for a selected tunnel in the Slovak critical infrastructure, with the aim to establish the potential structural damage as well as the tenability and evacuation conditions. The outcomes are two-fold; firstly, to demonstrate computer modelling capabilities in this area, and secondly, to determine the required fire safety measures and precautions to ensure appropriate structural fire resistance and adequate means of escape. The ability to accurately predict fire severity is key to the robustness of critical infrastructure design and it greatly reduces the likelihood of a catastrophic failure.
隧道消防安全是基础设施的重要组成部分
公路和铁路隧道是交通基础设施的重要组成部分,因为它们往往是穿越复杂地理环境的唯一途径。这些关键环节的故障可能会导致运输系统的大部分严重中断。由于它们的封闭结构,它们非常容易受到恐怖袭击或事故造成的火灾损害。本文主要研究隧道的消防安全问题,以及火灾对隧道施工和隧道内人员疏散影响的预测。对斯洛伐克关键基础设施中选定的一条隧道模拟了一个现实的最坏情况的火灾情景,目的是确定潜在的结构破坏以及可持续性和疏散条件。结果是双重的;首先,展示这方面的计算机模拟能力;其次,确定所需的消防安全措施和预防措施,以确保适当的结构防火性和足够的逃生通道。准确预测火灾严重程度的能力是关键基础设施设计稳健性的关键,它大大降低了灾难性故障的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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