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BLAST RESILIENT DESIGN OF INFRASTRUCTURE SUBJECTED TO GROUND THREATS

机译:受地面威胁的基础设施的高弹防护设计

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The growing number of terrorist attacks in the past decade has focused the public's attention on the severity of such a man-made hazard. The rising threat of improvised explosive devices-one of the most successful attack strategies-has significantly increased the number of threats on the ground, in the form of suicide-bombs, vehicle-bombs, etc., thereby requiring the development of more effective blast risk mitigation measures. However, the modern proliferation of such measures poses the problem of evaluating their cost-effectiveness, which prompts the need for a comprehensive optimization methodology-capable of maximizing the resilience of the built environment. The aim of this paper is to lay out the foundations of a resilience-based framework for quantifying the performance of different infrastructure elements incurring blast threats, by means of functionality and resilience indicators. The proposed framework can quantify the consequences of multiple outdoor explosions typified by the emblematic car-bomb scenario. The level of localized damage is evaluated via pressure-impulse diagrams; local failures are then aggregated into the definition of resilience and functionality indicators, designed to provide the analyst with a comprehensive picture of global damage, residual functionality, and downtime of the structural system.
机译:在过去十年中,恐怖袭击的数量不断增加,使公众的注意力集中在了这种人为危害的严重性上。简易爆炸装置(最成功的攻击策略之一)不断上升的威胁以自杀炸弹,车辆炸弹等形式显着增加了实地威胁的数量,因此需要开发更有效的爆炸装置降低风险的措施。然而,此类措施的现代化普及带来了评估其成本效益的问题,这促使人们需要一种能够使建筑环境的弹性最大化的综合优化方法。本文的目的是奠定基于弹性的框架的基础,该框架可通过功能和弹性指标来量化发生爆炸威胁的不同基础架构元素的性能。拟议的框架可以量化具有象征意义的炸弹场景所代表的多次室外爆炸的后果。局部损坏程度通过压力脉冲图进行评估。然后将本地故障汇总到弹性和功能指标的定义中,旨在为分析人员提供有关全局损坏,残余功能和结构系统停机时间的全面了解。

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