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煤矿井下瓦斯爆炸后爆源临近区域特殊热环境分析研究
引用本文:张庆华,段玉龙,周心权,唐韩英,覃木广. 煤矿井下瓦斯爆炸后爆源临近区域特殊热环境分析研究[J]. 煤炭学报, 2011, 36(7): 1165-1171
作者姓名:张庆华  段玉龙  周心权  唐韩英  覃木广
作者单位:1.瓦斯灾害监控与应急技术国家重点实验室,重庆 400037;2.中国煤炭科工集团有限公司 重庆研究院,重庆 400037
基金项目:国家自然科学基金资助项目(50874062); 国家重点基础研究发展计划(973)资助项目(2005cb221506)
摘    要:为了研究瓦斯爆炸诱发次生灾害的致灾热因素,对煤矿瓦斯爆炸特殊热环境进行了分析。将瓦斯爆炸后的特殊热环境分为爆炸产生的高温高压的火焰波、较高温常压的爆源邻近区域的动态热环境两部分。通过对瓦斯爆炸火焰波的特征的理论分析和相关专家学者开展的瓦斯爆炸实验所测得火焰波特征数据,对爆炸火焰波的温度、速度等参数进行了分析。通过数学模型的建立,结合瓦斯爆炸后瞬间爆源所在巷道空气温度随距离的分布规律及数值模拟技术对爆炸后爆源临近区域的较高温、常压的动态热环境进行了研究。得出,瓦斯爆炸大多数是弱爆燃状态。爆炸后爆源临近区域空气温度随传播距离的增加逐渐降低,高温区域逐渐向远离爆源的方向运移,高温的持续时间越来越短。

关 键 词:煤矿;瓦斯爆炸;爆源;热环境  
收稿时间:2011-03-23

Special thermal environment of adjacent explosions center areas after methane explosions
ZHANG Qing-hua,,DUAN Yu-long,ZHOU Xin-quan,TANG Han-ying,QIN Mu-guang,,Beijing ,China). Special thermal environment of adjacent explosions center areas after methane explosions[J]. Journal of China Coal Society, 2011, 36(7): 1165-1171
Authors:ZHANG Qing-hua    DUAN Yu-long  ZHOU Xin-quan  TANG Han-ying  QIN Mu-guang    Beijing   China)
Affiliation:ZHANG Qing-hua1,2,DUAN Yu-long1,ZHOU Xin-quan3,TANG Han-ying1,QIN Mu-guang1,2(1.National Key Laboratory of Gas Disaster Detecting,Preventing and Emergency Controlling,Chongqing 400037,China,2.Methane & Fire Branch,Chongqing Research Institute,China Coal Technology & Engineering Group Corp.,3.State Key Laboratory of Coal Resources and Safe Mining,China University of Mining & Technology(Beijing),Beijing 100083,China)
Abstract:The special thermal environment was analyzed to study the thermal factor that induced the sub-accident after methane explosions.The special environment was divided into two parts,the high temperature and high pressure fire flame,and the relatively high temperature and normal pressure environment of adjacent explosions center areas after methane explosions.The temperature and velocity of flame were discussed based on some theory study and some experiments which were done by some experts.The relatively high t...
Keywords:mine  methane explosions  explosion center  thermal environment  
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