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Efficiency of blast walls for protection of soft targets

机译:爆炸墙保护软目标的效率

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The recent trend of terrorist attacks on civilian targets, including transportation systems, resulted in efforts to harden and strengthen these objects which previously were not designed to cope with this kind of threat. The blast mitigation strategies traditionally used in industrial facilities may provide an additional safety. One such solution is a blast wall that could be used for fa?ade systems or for protection of muster areas and evacuation routes of metro and train stations or airports.This paper deals with the assessment of the blast response of protection walls. The typical types of blast walls commonly used in practice in industrial sector are described. The behavior of blast walls is characterized using simple analytical approach and finite element modelling. The advantages and limitations related to each of these characterization techniques are discussed compared with findings of other authors. Furthermore, a parametric study is performed through extrapolation of numerical models. Two common types of panels with both fixed and pinned boundary conditions are subjected to directly defined pressure loads. Their responses are compared in order to evaluate the effects on the primary steelwork. Possible benefits deriving from typological and geometrical modifications of the local element are also presented. Particular emphasis is given to the importance of the estimation of the reaction forces, displacements and energy dissipation.
机译:恐怖主义最近袭击包括运输系统在内的平民目标的趋势导致人们努力加强和加强这些以前不旨在应付这种威胁的物体。传统上用于工业设施的减震策略可以提供额外的安全性。一种这样的解决方案是爆炸墙,该爆炸墙可用于外墙系统或保护地铁,火车站或机场的集会区域和疏散路线。本文涉及对保护墙的爆炸响应的评估。描述了工业领域通常使用的典型爆炸墙类型。使用简单的分析方法和有限元建模来表征爆炸墙的行为。与其他作者的发现相比,讨论了与每种表征技术有关的优点和局限性。此外,通过数值模型的外推进行参数研究。具有固定边界条件和固定边界条件的两种常见类型的面板承受直接定义的压力载荷。比较他们的响应,以评估其对主要钢结构的影响。还介绍了局部元素在类型和几何上的修改可能带来的好处。特别强调估计反作用力,位移和能量耗散的重要性。

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