Assessment of Blast Induced Damage in Concrete Walls of Urban Metro Stations Using the Finite Elements Method

M. Amini, Abbas Sivandi
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Abstract

Structural engineers are faced with many different challenges when designing structures, especially in important re inforced concrete buildings that could be subjected to blast loads. The response of structures due to explosions are controlled by some parameters, such as mass and standoff distance of charge, dimensions and direction of structure, adjacency to other buildings, and important properties of the land. A common lateral load resisting system that is particularly vulnerable to blast loads is the internal reinforced concrete shear wall in urban metro stations. This study investigated the dynamic behavior of the internal wall in a metro station in the effect of blast loading. To assess the progressive collapse of these structures, the damaged walls should be modeled in software. The modeling of damage walls is complicated; therefore, in this study, after analysis of the area of damage, an equal wall was proposed to substitute for the damaged wall.
基于有限元法的城市地铁车站混凝土墙体爆炸损伤评估
结构工程师在设计结构时面临着许多不同的挑战,特别是在可能承受爆炸荷载的重要钢筋混凝土建筑物中。结构的爆炸响应受一些参数控制,如电荷的质量和距离、结构的尺寸和方向、与其他建筑物的邻接性以及土地的重要性质。城市地铁车站内钢筋混凝土剪力墙是一种常见的抗侧荷载体系,特别容易受到爆炸荷载的影响。本文研究了爆炸荷载作用下地铁车站内墙的动力特性。为了评估这些结构的逐渐倒塌,应在软件中模拟损坏的墙壁。损伤壁的建模比较复杂;因此,本研究在对损伤面积进行分析后,提出用等量墙体代替损伤墙体。
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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