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首页> 外文期刊>International journal of critical infrastructure >Blast resistant design of precast reinforced concrete walls for strategic infrastructures under uncertainty
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Blast resistant design of precast reinforced concrete walls for strategic infrastructures under uncertainty

机译:不确定条件下战略基础设施的预制钢筋混凝土墙的抗爆设计

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摘要

Extreme loads can have devastating effects on civilian structures since these buildings are not designed to withstand extreme events. Typical buildings and other critical infrastructures are particularly prone to external man-made attacks. This study focuses on probabilistic analyses, and investigates the probability of exceeding a given limit state of a precast concrete wall subjected to blast loads. The wall under investigation is a non-load bearing precast concrete panel used as exterior cladding for buildings. From the blast design point of view, these walls must protect people and equipment from external detonations. The aim of the paper is to compute both the fragility curves and the probability of exceedance of a typical precast concrete cladding system, considering a prescribed detonation of a vehicle borne improvised explosive device. To this aim non-linear dynamic analyses are carried out by the widely adopted equivalent single degree of freedom method. The fragility curves and the probability of exceedance of the precast concrete cladding wall are computed using Monte Carlo simulations.
机译:极端载荷可能会对民用建筑造成破坏性影响,因为这些建筑物的设计目的不是承受极端事件。典型的建筑物和其他关键基础设施特别容易受到外部人为攻击。这项研究侧重于概率分析,并研究了承受爆炸载荷的预制混凝土墙超过给定极限状态的可能性。研究中的墙是一种无负荷的预制混凝土面板,用作建筑物的外墙。从爆炸设计的角度来看,这些墙必须保护人员和设备免受外部爆炸的伤害。本文的目的是考虑到车载简易爆炸装置的规定起爆量,计算出典型预制混凝土覆层系统的脆性曲线和超过概率。为此,通过广泛采用的等效单自由度方法进行了非线性动力学分析。使用蒙特卡洛模拟来计算预制混凝土覆墙的脆性曲线和超过概率。

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