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Dynamic Analysis of Subway Structures Under Blast Loading

机译:爆炸荷载作用下地铁结构的动力分析

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Public transit systems have become one of the targets of terrorist attacks using explosives, examples of which are the 1995 attack on Paris subway and the 2004 attack on Moscow subway. Considering the intense threats of terrorist attacks on subway systems in metropolitan areas, explicit three-dimensional Finite Element method was used to investigate the dynamic response and damage of subway structures under internal blast loading. The study was motivated by the fact that explosion in subway structure may not only cause direct life loss, but also damage the subway structure and lead to further loss of lives and properties. The study based on the New York subway system, and investigated the influences of various factors on the possible damage of subway tunnel, including weight of explosive, ground media, burial depth and characteristics of blast pressure. A mitigation measure using grouting to improve ground stiffness and strength was also analyzed. Considering the amount of explosive terrorists may use, the present study focused on small-diameter single-track tunnels, which are more vulnerable to internal blast loading and are common in New York City. Blast pressure from explosion was applied to lining surface assumingrntriangle pressure-time diagram, and the elasto-plas-ticity of ground and lining as well as their nonlinear interaction was taken into account in the numerical model. It is found from the numerical study that maximum lining stress occurred right after explosion, before the blast air pressure reduced to the atmospheric one, and it was more dependent on the maximum magnitude of air pressure than on the specific impulse, which is the area below the pressure-time curve. Small tunnels embedded in soft soil, with small burial depth, might be permanently damaged even by modest internal explosion that may be perpetuated by terrorists.
机译:公共交通系统已成为使用炸药进行恐怖袭击的目标之一,例如1995年袭击巴黎地铁和2004年袭击莫斯科地铁。考虑到大都市地区地铁系统遭受恐怖袭击的强烈威胁,采用显式三维有限元方法研究了内部爆炸荷载作用下地铁结构的动力响应和破坏。该研究的动机是,地铁结构的爆炸不仅会造成直接的生命损失,而且还会损坏地铁结构并导致更多的生命和财产损失。该研究基于纽约地铁系统,研究了炸药重量,地面介质,埋藏深度和爆炸压力特征等各种因素对地铁隧道可能造成的破坏的影响。还分析了使用灌浆改善地面刚度和强度的缓解措施。考虑到可能使用的爆炸性恐怖分子数量,本研究集中在小直径单轨隧道上,该隧道更容易受到内部爆炸的冲击,在纽约市很常见。假设三角压力-时间图,将爆炸的爆炸压力施加到衬砌表面,并在数值模型中考虑了地面和衬砌的弹塑性和非线性相互作用。从数值研究中发现,最大衬里应力在爆炸后立即发生,在鼓风压力降到大气压力之前,它更多地取决于最大气压,而不是比冲击力大,比冲击小于该区域。压力时间曲线。埋在软土中,埋深较小的小隧道即使受到恐怖分子可能持续的适度内部爆炸,也可能永久损坏。

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