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开敞空间蒸气云爆炸压力的实验研究
引用本文:毕明树,喻建良,周一卉,王淑兰,丁信伟.开敞空间蒸气云爆炸压力的实验研究[J].中国化学工程学报,2003,11(1):90-93.
作者姓名:毕明树  喻建良  周一卉  王淑兰  丁信伟
作者单位:[1]SchoolofChemicalEngineering,DalianuniversityofTechnology,Dalian116012,China [2]FacultyofScienceandTechnology,HirosakiUniversity,Japan
基金项目:Supported by the National Natural Science Foundation of China(No. 50076006).
摘    要:An experimental system was setup to study the pressure field of unconfined vapor cloud explosions.The semi-spherical vapor clouds were formed by slotted 0.02mm polyethylene film.In the Center of the cloud was an ignition electrode that met ISO6164“Explosion protection System“ and NFPA68 “Guide for Venting of Deflagrations“. A data-acquisition system,with dymame responding time less than 0.001s with 0.5% accuracy,recorded the pressure-time diagram of acetylene-air mixture explosion with stoichiometrical ratio.The initial cloud diameters varied from 60cm to 300cm.Based on the analysis of experimental data,the quantitative relationship is obtained for the cloud explosion pressure,the cloud radius and the distance from ignition point .Present results provide a useful way to evaluate the building damage caused by unconfined vapor cloud explosions and to determine the indispensable explosion grade in the application of multi-energy model.

关 键 词:TNT  炸药  蒸汽云  开敞空间  爆炸压力  实验研究
修稿时间: 

Experimental Study on Unconfined Vapor Cloud Explosion
ABULITI Abudulab,BI Mingshu,DING Xinwei,ZHOU Yihui,YU Jianliang,WANG Shulan,ABULITI Abudulab.Experimental Study on Unconfined Vapor Cloud Explosion[J].Chinese Journal of Chemical Engineering,2003,11(1):90-93.
Authors:ABULITI Abudulab  BI Mingshu  DING Xinwei  ZHOU Yihui  YU Jianliang  WANG Shulan  ABULITI Abudulab
Affiliation:School of Chemical Engineering, Dalian University of Technology, Dalian 116012, China Faculty of Science and Technology, Hirosaki University, Japan
Abstract:An experimental system was setup to study the pressure field of unconfined vapor cloud explosions. The semi-spherical vapor clouds were formed by slotted 0.02mm polyethylene film. In the center of the cloud was an ignition electrode that met ISO6164 "Explosion Protection System" and NFPA68 "Guide for Venting of Deflagrations". A data-acquisition system, with dynamic responding time less than 0.001s with 0.5% accuracy, recorded the pressure-time diagram of acetylene-air mixture explosion with stoichiometrical ratio. The initial cloud diameters varied from 60 cm to 300 cm. Based on the analysis of experimental data, the quantitative relationship is obtained for the cloud explosion pressure, the cloud radius and the distance from ignition point. Present results provide a useful way to evaluate the building damage caused by unconfined vapor cloud explosions and to determine the indispensable explosion grade in the application of multi-energy model.
Keywords:unconfined vapor cloud explosion  safety  experiment  deflagration  
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