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Integrated anti-terrorism physics-based modelling part 1: threats, loads and structural response

机译:基于抗恐怖主义物理的建模部分1:威胁,负荷和结构反应

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Modelling of a terrorist attack in an urban environment requires a balanced understanding of the complex physical processes that occur and management of the inherent uncertainties associated with the modelling. This paper examines the key physics-based techniques required to accurately model a terrorist attack in an urban environment. Specifically this paper will address the blast and fragment environment that results from an Improvised Explosive Device (IED) detonation, the loads on an urban structure and the response of that structure, to include progressive collapse. Tools such as the United States Air Force Research Laboratory's (AFRL's) Modular Effectiveness/Vulnerability Assessment (MEVA) code and the Defense Threat Reduction Agency's (DTRA's) Integrated Modular Effectiveness Analysis (IMEA) tool embody algorithms for blast and fragment environment characterization, structural response analyses, and structural assessments. The key physics-based algorithms in these tools and others will be highlighted. Additionally this paper will provide an approach to handling the uncertainties of modelling the urban structure given limited knowledge of the building's key structural attributes. The combination of treating uncertainties in a physics-based approach provides an integrated modelling method for evaluating and planning for a terrorist attack.
机译:在城市环境中的恐怖袭击的建模需要与建模相关的固有不确定性的出现和管理复杂的物理过程的平衡的理解。本文探讨了需要准确地模拟在城市环境恐怖袭击的关键物理为基础的技术。具体来说本文将解决高炉和碎片环境,从一个简易爆炸装置(IED)爆炸的结果,在一个城市结构的负荷和该结构的响应,以包括连续倒塌。工具,如美国空军研究实验室(AFRL的)模块化有效性/漏洞评估(MEVA)代码和国防威胁降低局(DTRA的)集成模块化效果分析(IMEA)工具Embody座椅算法爆炸和碎片环境特征,结构响应分析和结构的评估。在这些工具和其他关键的基于物理学的算法将被高亮显示。另外本文将提供一种方法来处理模拟给出的建筑物的主要结构属性的知识有限的城市空间结构的不确定性。在基于物理的方法处理不确定性的结合,提供了评估和计划恐怖袭击的集成建模方法。

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