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ZHANG Chuangye, WANG Xiaochuan, LU You-chang, XU Chaoyu, LI Zhenxing. Collaborative technology of mining disturbance pressure relief effect and Gas - spontaneous combustion collaborative control technology[J]. Mining Safety & Environmental Protection.
Citation: ZHANG Chuangye, WANG Xiaochuan, LU You-chang, XU Chaoyu, LI Zhenxing. Collaborative technology of mining disturbance pressure relief effect and Gas - spontaneous combustion collaborative control technology[J]. Mining Safety & Environmental Protection.

Collaborative technology of mining disturbance pressure relief effect and Gas - spontaneous combustion collaborative control technology

  • In order to improve the disaster control level of deep coal seam prone to spontaneous combustion with high gas and explore a reasonable collaborative control method of gas and spontaneous combustion under the mining of the lower protective layer, taking the mining of hex18 coal seam of Pingcoal No.12 coal Mine as the research object, analyze the mobile failure characteristics of the mining disturbance protected layer, and clarify the influence law of the disturbance effect on the coal rock mass and gas seepage of the protected layer. Formulate corresponding collaborative technologies for gas control and coal spontaneous combustion prevention. The results show that the pressure relief effect of the protected layer is significant under the influence of the mining disturbance of hex18 coal seam. The expansion deformation of coal seam along the vertical direction is greater than 0.3%, and the permeability of coal seam increases and the outburst risk decreases. The three dimensional full coverage gas extraction technology of the working face under the protective layer can effectively solve the problem of gas in the mine, such as horizontal hole, long hole along the layer, high suction roadway through the layer and buried pipe in goaf. At the same time, combined with ventilation management optimization, forecast, isolation and cooling integrated fire prevention technology, can effectively control the risk of coal seam spontaneous combustion.
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