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出 处:《煤炭学报》2009年第7期938-941,共4页Journal of China Coal Society
基 金:国家自然科学基金资助项目(50874088);新世纪优秀人才支持计划资助项目(NECT050874);陕西省教育厅专项科研计划资助项目(08JK351)
摘 要:在断面为7.2 m2、长为658 m的实验巷道内,用cs2092H多通道动态数据采集分析仪,模拟煤矿掘进巷道,对瓦斯、煤尘爆炸过程中的爆炸冲击波能量、传播速度、衰减规律以及爆炸灾害的波及范围进行了实验研究.结果表明,瓦斯、煤尘爆炸压力波衰减慢,爆炸传播距离远,且传播距离随瓦斯数量以及瓦斯、煤尘分布的变化而变化.与瓦斯爆炸相比,煤尘爆炸的剧烈程度强,坑道中煤尘的焦化明显,且可燃物灼烧情况可作为瓦斯煤尘爆炸的爆源点确认判据.By using cs2092H muhichannel dynamic data collecting and analyzing instrument, gas and coal dust explosion process experiment was done in the experimental lane whose section was 7.2 m^2 and the length was 658 m, which was used to simulate drifting lane in coal mine. Including the measured characters as: energy, propagation speed and weakening law of explosion blast wave, range of explosion hazard and so on. The result shows that gas and coal dust explosion propagation distance is long while the pressure wave weakens slowly, and the propagation distance varies with the change of gas amount and the distribution of gas and coal dust. Comparing with gas explosion, gas and coal dust explosion is fiercer, coking of coal dust in the lane is more obvious. The burning remain of combustible can be used as evidence for judging explosion source point.
分 类 号:TD712.7[矿业工程—矿井通风与安全] TD714.5
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