多个同时引爆装药的冲击聚焦增强了爆炸波参数

IF 2.1 Q2 ENGINEERING, CIVIL International Journal of Protective Structures Pub Date : 2021-07-24 DOI:10.1177/20414196211033310
Amir Zaghloul, A. Remennikov, B. Uy
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引用次数: 5

摘要

在过去的几十年里,随着恐怖袭击的增加,许多工程学会已经开始发布计算结构爆炸载荷的设计指南。虽然这种导程可以成功地用于评估单次爆炸的爆炸载荷,但多次爆炸的影响往往被忽视。在本研究中,重点研究了多药同时起爆引起的爆炸参数的增强,并着重研究了爆炸波与窄靶的相互作用。使用有限体积代码Viper::Blast进行了参数化CFD研究,其中改变了装药数量、排列方式和比例隔离距离。研究发现,当同时引爆时,与等效的单装药相比,多装药返回的压力和脉冲值要高得多。此外,多装药的弧形布置比平面布置在增强爆炸波参数方面更有效。这种增强在涉及拆迁的情况下是有益的。本文提出了计算多个同时引爆的球形装药的冲击波参数的近似方法,其中多个装药的压力和冲量可以通过只知道等效单装药的参数来计算。
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Enhancement of blast wave parameters due to shock focusing from multiple simultaneously detonated charges
With the increase of terrorist attacks over the past decades, many engineering societies have started issuing design guides to calculate blast loads on structures. While such guides can be successfully used to assess blast loads due to single detonations, the effects of multiple detonations are often overlooked. In this research, the enhancement in blast parameters resulting from simultaneously detonating multiple charges is investigated, emphasising the interaction of blast waves with narrow targets. A parametric CFD study using the finite volume code Viper::Blast was performed where the number of charges, their arrangement, and the scaled stand-off distances were changed. It is found that, when detonated simultaneously, multiple charges return much higher pressure and impulse values compared to an equivalent single charge. Moreover, an arced arrangement of multiple charges is more efficient than a flat arrangement in enhancing blast wave parameters. Such enhancement is beneficial in scenarios involving demolition. Approximate methods to compute blast wave parameters from multiple simultaneously detonated spherical charges are presented in this study, where pressure and impulse from multiple charges can be computed by only knowing the parameters resulting from an equivalent single charge.
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来源期刊
CiteScore
4.30
自引率
25.00%
发文量
48
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