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管道内瓦斯爆炸引起沉积煤粉尘二次爆炸的实验研究 被引量:10
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作者 胡双启 尉存娟 谭迎新 《应用基础与工程科学学报》 EI CSCD 2010年第6期895-899,共5页
为了系统研究可燃气体、可燃粉尘的爆炸特性,研制了一套由水平燃烧爆炸管道、配气系统、点火系统和爆炸压力测试系统组成的水平管道式气体-粉尘爆炸实验系统.利用该系统进行了瓦斯爆炸引起沉积煤粉尘二次爆炸的实验研究.结果发现二次爆... 为了系统研究可燃气体、可燃粉尘的爆炸特性,研制了一套由水平燃烧爆炸管道、配气系统、点火系统和爆炸压力测试系统组成的水平管道式气体-粉尘爆炸实验系统.利用该系统进行了瓦斯爆炸引起沉积煤粉尘二次爆炸的实验研究.结果发现二次爆炸的爆炸压力随煤粉尘浓度的增大呈现出先增大后减小的变化规律,最大爆炸压力出现在煤粉尘浓度为200g/m3附近;随着煤粉尘粒径的增大,二次爆炸的爆炸压力则是线性递减的,该研究结果对煤矿安全生产有重要的指导意义. 展开更多
关键词 瓦斯爆炸 煤粉尘爆炸 二次爆炸 实验装置
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Active explosion barrier performance against methane and coal dust explosions 被引量:8
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作者 J. J. L. du Plessis 《International Journal of Coal Science & Technology》 EI 2015年第4期261-268,共8页
Preventing the propagation of methane or coal dust explosions through the use of active explosion-suppression systems remains one of the most underutilised explosion controls in underground coal mines. As part of the ... Preventing the propagation of methane or coal dust explosions through the use of active explosion-suppression systems remains one of the most underutilised explosion controls in underground coal mines. As part of the effort to develop better technologies to safeguard mines, the use of active barrier systems was investigated at Kloppersbos in South Africa. The system is designed to meet the requirements of the European Standard (EN 14591-4 2007) as well as the Mine Safety Standardisation in the Ministry of Coal Industry, Coal Industrial 1 Standard of the Peoples Republic of China (MT 694-1997). From the tests conducted, it can be concluded that the ExploSpot System was successful in stopping flame propagation for both methane and methane and coal dust hybrid explosions when ammonium phosphate powder was used as the suppression material. The use of this barrier will provide coal mine management with an additional explosion control close to the point of ignition and may find application within longwall faces further protecting mines against the risk of an explosion propagating throughout a mine. 展开更多
关键词 COAL METHANE Explosions Active barriers
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Study on explosion process of methane-coal dust mixture
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作者 Guang-Dong GONG Chun-Hua BAI Qing-Ming LIU 《Journal of Coal Science & Engineering(China)》 2013年第3期332-336,共5页
The experimental system of 10 m3 large-scale multiphase combustion explosion tank was used for research into the explosion development process under the ignition conditions of methane-coal dust-air mixture, and the ov... The experimental system of 10 m3 large-scale multiphase combustion explosion tank was used for research into the explosion development process under the ignition conditions of methane-coal dust-air mixture, and the overpressure development processes of the mixture at different distances were obtained. For the methane-coal dust-air mixture with an equivalence ratio of 1, the explosion pressure and pressure rise rate reached their maximum under a methane concentration of 8% and a coal dust concentration of 25 g/m3, while the maximum explosion pressure and pressure rise rate both occurred 0.5 m away from the ignition point under a methane concentration of between 4.5% and 8%, and a coal dust concentration of between 25 g/m3 and 1 O0 g/m3. Moreover, the greater the explosion intensity of mixture, the closer the occurrence location of maximum overpres- sure was to the ignition source. 展开更多
关键词 METHANE coal dust explosion
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