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A design approach for tunnels exposed to blast and fire

机译:暴露于爆炸和火灾的隧道的设计方法

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摘要

A design procedure based on a simplified FE model for underground tunnels subjected to internal explosion and possibly preceded by fire accidents is proposed in this article. The procedure can provide a valuable tool for designers who have to check the structural safety of a tunnel for the case of an internal blast event. The tunnel geometry considered is the same adopted for the metro line in Brescia, Italy. It has an internal diameter of about 8.15 m, is about 13.7 km long and is located about 23.1 m below the surface. Six segments and a smaller key segment (6+1) make up the tunnel. The ring has an average width of about 1.5 m. The FE model is first tested under static serviceability loads. Dynamic analyses are carried out in order to reproduce the blast scenario. The aim of this work is to generate pressure-impulse (p-i) diagrams for underground tunnels for the case of internal explosion and pre-explosion fire actions. An ultimate limit state criterion based on the eccentric ultimate flexural capacity and capable of including fire-blast interaction is introduced. An innovative layered precast tunnel segment solution made of different fibre-reinforced cementitious composites is compared with a traditional solution with the lining section made of reinforced concrete. The potential applications of this new solution are also discussed in the paper.
机译:本文提出了一种基于简化有限元模型的地下隧道内部爆炸和可能发生火灾事故的设计程序。该程序为必须检查隧道内部爆炸事件的结构安全性的设计人员提供了宝贵的工具。所考虑的隧道几何形状与意大利布雷西亚的地铁线路采用的隧道几何形状相同。它的内径约为8.15 m,长约13.7 km,位于地表以下约23.1 m。隧道由六个部分和一个较小的关键部分(6 + 1)组成。环的平均宽度约为1.5 m。有限元模型首先在静态可使用性负载下进行测试。为了重现爆炸场景,进行了动态分析。这项工作的目的是针对内部爆炸和爆炸前火灾行为生成地下隧道的压力-脉冲(p-i)图。引入了基于偏心极限挠曲能力并能够包括爆炸相互作用的极限极限状态判据。将由不同纤维增强水泥复合材料制成的创新分层预制隧道分段解决方案与由钢筋混凝土制成的衬砌部分的传统解决方案进行了比较。本文还讨论了这种新解决方案的潜在应用。

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