东北大学学报:自然科学版 ›› 2014, Vol. 35 ›› Issue (7): 1047-1050.DOI: 10.12068/j.issn.1005-3026.2014.07.030

• 资源与土木工程 • 上一篇    下一篇

储罐爆炸事故中抛射碎片初速度预测

潘科,许开立   

  1. (东北大学 资源与土木工程学院, 辽宁 沈阳110819)
  • 收稿日期:2013-08-29 修回日期:2013-08-29 出版日期:2014-07-15 发布日期:2014-04-11
  • 通讯作者: 潘科
  • 作者简介:潘科(1980-),男,江苏无锡人,东北大学博士研究生,大连交通大学讲师;许开立(1965-),男,山东郓城人,东北大学教授,博士生导师.
  • 基金资助:
    辽宁省自然科学基金资助项目(201202022).

Prediction of the Fragments Initial Velocity in Tank Explosions Accident

PAN Ke, XU Kaili   

  1. School of Resources & Civil Engineering, Northeastern University, Shenyang 110819, China.
  • Received:2013-08-29 Revised:2013-08-29 Online:2014-07-15 Published:2014-04-11
  • Contact: PAN Ke
  • About author:-
  • Supported by:
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摘要: 为合理确定爆炸事故中抛射物初速度,基于碎片穿透实验及理论分析建立了两种碎片初速度的预测方法.在理论估算中,建立了以爆炸总能量乘以能量转化效率因子确定碎片初动能的碎片初速度预测模型.在爆炸总能量的计算方法中,Baum方程可以估算压缩气体物理爆炸、化学反应失控爆炸的总能量,而在BLEVE中,用液体过热能来估算爆炸能量更为准确.以Baum,Birk等实验的转化效率为基础,根据最大熵原理得出了碎片能量转化效率因子的概率密度符合伽马分布.由实例分析可知,BLEVE中基于过热能及效率因子的初速度预测方法可以有效地进行爆炸碎片危险的定量化评价.

关键词: 爆炸碎片, 抛射碎片初速度, BLEVE事故, 最大熵原理, 概率密度函数, 伽马分布

Abstract: Two prediction methods were established based on the penetration experiments and theoretic analysis to rationally determine the initial velocity of the fragments. The initial velocity prediction model based on the initial kinetic energy was established by the total explosion energy and energy transferred factor. The total energy for the physical explosion of compressed gas tank and runaway reaction explosion can be estimated by Baum equation, while overheated energy as total energy produced by overheated liquid in BLEVE is more rational. The energy probability density transferred factor was obtained by the existing data collected from experiments of Baum, Birk, industrial explosions and maximum entropy principle. The results show that the probabilistic density of energy transferred factor is gamma distribution. Using the presented method, the initial velocity for the quantitative assessment of the explosion fragments can be predicted effectively.

Key words: fragments in explosion, fragments initial velocity, BLEVE accident, maximum entropy principle, probabilistic density function, gamma distribution

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