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The spatial distribution patterns of condensed phase post-blast explosive residues formed during detonation

机译:爆炸过程中凝聚相爆炸后爆炸残留物的空间分布规律

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摘要

The continued usage of explosive devices, as well as the ever growing threat of ‘dirty’ bombs necessitates a comprehensive understanding of particle dispersal during detonation events in order to develop effectual methods for targeting explosive and/or additive remediation efforts. Herein, the distribution of explosive analytes from controlled detonations of aluminised ammonium nitrate and an RDX-based explosive composition were established by systematically sampling sites positioned around each firing. This is the first experimental study to produce evidence that the post-blast residue mass can distribute according to an approximate inverse-square law model, while also demonstrating for the first time that distribution trends can vary depending on individual analytes. Furthermore, by incorporating blast-wave overpressure measurements, high-speed imaging for fireball volume recordings, and monitoring of environmental conditions, it was determined that the principle factor affecting all analyte dispersals was the wind direction, with other factors affecting specific analytes to varying degrees. The dispersal mechanism for explosive residue is primarily the smoke cloud, a finding which in itself has wider impacts on the environment and fundamental detonation theory.
机译:爆炸装置的持续使用,以及“肮脏”炸弹的威胁不断增长,因此需要对爆炸过程中颗粒的扩散有一个全面的了解,以便开发出针对爆炸和/或附加补救措施的有效方法。在此,通过系统地采样位于每次燃烧周围的位置,可以确定铝化硝酸铵和RDX基炸药成分的受控爆炸引起的爆炸物分析物的分布。这是第一个提供证据证明爆炸后残留物质量可以根据近似平方反比定律模型进行分布的实验研究,同时还首次证明了分布趋势可以根据各个分析物而变化。此外,通过合并爆炸波超压测量,用于火球体积记录的高速成像以及环境条件监视,可以确定影响所有分析物扩散的主要因素是风向,而其他因素则在不同程度上影响特定分析物。爆炸性残留物的扩散机制主要是烟雾云,这一发现本身对环境和基本爆炸理论有更广泛的影响。

著录项

  • 作者

    Philip Gill;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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