受载含瓦斯煤岩组合体失稳致灾试验研究

    Experimental study on disaster caused by instability of loaded gas-bearing coal-rock combination

    • 摘要: 近年来,我国浅部煤炭资源枯竭,煤矿开采深度和强度逐渐增加,瓦斯涌出量急剧增加,煤岩复合灾害频繁发生,给矿井安全生产带来了巨大风险。为了深入了解煤岩瓦斯复合动力灾害形成机制,以含瓦斯煤岩组合体为研究对象,开展不同工况下煤岩组合体失稳致灾试验。研究结果表明:事故发生时,抛撒煤粉主要集中在中、远部区域,其抛掷距离最高可达17 m;1#~3#试验的煤岩组合体在不同瓦斯压力下,灾害相对强度从12.61%增加到20.53%,增加了7.92%,灾害类型从复合灾害变成煤与瓦斯突出;其他条件一致时,瓦斯压力和顶板强度越小,煤体强度和地应力越大,煤岩组合体发生复合动力灾害的概率则越大。

       

      Abstract: With the depletion of shallow coal resources in China, the depth and intensity of coal mining have gradually increased in recent years, the amount of gas emission has increased sharply, and coal-rock compound disasters occur frequently, which brings great risks to mine safety production. In order to have a better understanding of the formation mechanism of coal-rock-gas compound dynamic disaster, the coal-rock combination with gas was taken as the research object to carry out the disaster experiment of coal-rock combination instability under different working conditions. The results show that when the accident occurs, the scattered pulverized coal is mainly concentrated in the middle and distal areas, and the throwing distance can be up to 17 meters. The relative intensity of disasters for coal-rock formations 1# to 3# increases from 12.61% to 20.53% under different gas pressures, showing an increase of 7.92%, and the type of disaster changes from compound disaster to coal and gas outburst. The smaller the gas pressure and roof strength, the greater the coal strength and ground stress, and other conditions are the same, it can promote the coal-rock-gas compound dynamic disaster.

       

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