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基于关键调查技术的大规模液化石油气爆炸事故原因分析:案例研究

Cause Analysis of the Large-Scale LPG Explosion Accident Based on Key Investigation Technology: A Case Study.

作者信息

Qian Xinming, Zhang Ruoheng, Zhang Qi, Yuan Mengqi, Zhao Yao

机构信息

State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Room 316, Haidian District, Beijing 100081, China.

出版信息

ACS Omega. 2021 Jul 29;6(31):20644-20656. doi: 10.1021/acsomega.1c02837. eCollection 2021 Aug 10.

Abstract

Blending dimethyl ether (DME) into liquefied petroleum gas (LPG) has become a common phenomenon. On December 3, 2019, an LPG/DME explosion occurred in Beijing, resulting in 4 deaths and 10 injuries. To deeply investigate the cause and explosion process of the explosion accident, the accident investigation method combining on-site inspection, material evidence analysis, experimental verification, and logical reasoning was used. In addition, the location of the ignition point, the explosive substances, the cause of the gas leakage, the process and the distribution characteristics of the gas leakage, and the ignition process were successively reasoned and analyzed in detail. The results show that the LPG/DME-blended gas can effectively corrode silicone flange gaskets, forming laminar fractures and radial cracks on the gasket. As a result, the tensile strength of the gasket decreased. Under the action of the gas pressure inside the pipeline, the gasket was torn and a leakage hole was formed. The leaked combustible gas formed at least 305 m of the explosive gas mixture inside and outside the refrigerated storage. The investigation and research results have important scientific guiding significance for revealing the cause and preventing similar accidents.

摘要

将二甲醚(DME)混入液化石油气(LPG)已成为一种普遍现象。2019年12月3日,北京发生一起LPG/DME爆炸事故,造成4人死亡,10人受伤。为深入调查此次爆炸事故的原因及爆炸过程,采用了现场勘查、物证分析、实验验证和逻辑推理相结合的事故调查方法。此外,对点火点位置、爆炸物质、气体泄漏原因、气体泄漏过程及分布特征以及点火过程进行了详细的逐一推理分析。结果表明,LPG/DME混合气体能有效腐蚀硅橡胶法兰垫片,在垫片上形成层状断裂和径向裂纹。结果,垫片的拉伸强度降低。在管道内气体压力作用下,垫片被撕裂形成泄漏孔。泄漏的可燃气体在冷藏库内外形成了至少305米的爆炸性气体混合物。调查研究结果对揭示事故原因和预防类似事故具有重要的科学指导意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3e8/8359157/89ec53763991/ao1c02837_0002.jpg

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