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一种预测和分析人口密集区附近硝酸铵爆炸事故后果的实用方法。

A practical method for predicting and analyzing the consequences of ammonium nitrate explosion accidents adjacent to densely populated areas.

作者信息

Wang Qiang, Zhang Lei, Wang Lili, Bu Lijuan

机构信息

Chinese PLA Center for Disease Control and Prevention, Beijing, 100071, China.

出版信息

Heliyon. 2023 Apr 25;9(5):e15616. doi: 10.1016/j.heliyon.2023.e15616. eCollection 2023 May.

Abstract

Several catastrophic ammonium nitrate (AN) explosion accidents have been reported during the last decades. Previous studies have been mainly focused on investigating adverse effects caused by the AN explosion, while only a few systematically analyzed the consequences and impacts of AN explosions. This study collects data from three typical AN explosions (accidental explosion of the US fertilizer plant in 2013; an accidental explosion of China's Tianjin port in 2015, and a recent explosion (2020) of the Beirut port in Lebanon). The consequences of accidental explosions were analyzed by mathematical equations that further provide scientific explanations for AN explosions. Based on the explosives' properties on-site, these accidental explosions were caused by condensed phase explosives. Comparison with the conditions at the explosion site indicated that blast overpressure was the primary factor in the loss of life and damage to the building, while ground shock was a secondary factor. The severity of loss of life and building damage from explosions decreased with increasing distance. These distances could be calculated by the scaling law, which was replaced by the equivalent TNT mass of the explosive and the damage scale's overpressure boundary value. In addition, mapping the damaged area on a map helped in the visual presentation of the consequence assessment. The long-term environmental and ecological impact due to the explosions was also an important issue that could not be ignored. Overall, this study establishes a simple and easy-to-use method to rapidly predict and assess the consequences of an explosion, and provides technical guidance for future emergency response to similar large-scale accidents.

摘要

在过去几十年间,已有多起灾难性硝酸铵(AN)爆炸事故被报道。此前的研究主要集中在调查硝酸铵爆炸所造成的不利影响,而仅有少数研究系统地分析了硝酸铵爆炸的后果及影响。本研究收集了三起典型硝酸铵爆炸事件的数据(2013年美国化肥厂意外爆炸;2015年中国天津港意外爆炸;以及黎巴嫩贝鲁特港口最近在2020年发生的爆炸)。通过数学方程式分析意外爆炸的后果,这进一步为硝酸铵爆炸提供了科学解释。基于现场炸药的特性,这些意外爆炸是由凝聚相炸药引起的。与爆炸现场的情况对比表明,爆炸超压是造成人员伤亡和建筑物损坏的主要因素,而地面震动是次要因素。爆炸造成的人员伤亡和建筑物损坏的严重程度随着距离的增加而降低。这些距离可以通过比例定律来计算,该定律用炸药的等效TNT质量和破坏等级的超压边界值来代替。此外,将受损区域绘制在地图上有助于直观呈现后果评估。爆炸造成的长期环境和生态影响也是一个不可忽视的重要问题。总体而言,本研究建立了一种简单易用的方法来快速预测和评估爆炸后果,并为未来应对类似大规模事故的应急响应提供技术指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96fb/10163611/48b075cd7c84/gr1.jpg

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