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东峰煤矿基于松动圈理论的抽采钻孔优化研究

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为实现煤层瓦斯的高效抽采,本文以东峰煤矿3203工作面为背景,对抽采钻孔进行优化设计.基于数值模拟与现场测定结果,通过分析工作面瓦斯来源以及工作面通风方式,提出工作面瓦斯抽采技术方案.采用钻屑量法与数值模拟对围岩松动圈进行研究,优化封孔设计,最后通过现场实测工作面瓦斯参数分析抽采效果.结果表明,"本煤层预抽、边抽边采、采空区埋管与高位钻孔的综合抽采技术"与基于围岩松动圈理论的钻孔封孔设计能够很好的治理煤层瓦斯,瓦斯抽采量达54%以上,控制了工作面与巷道瓦斯浓度,保证了工作面回采安全.
Study on optimization of extraction drilling based on loose circle theory in Dongfeng Coal Mine
In order to realize the efficient extraction of coal seam gas,this paper takes the 3203 working face of Dongfeng Coal Mine as the background to optimize the design of extraction boreholes.Based on the results of numerical simulation and field measurement,the technical scheme of gas extraction in working face is put forward by analyzing the gas source and ventilation mode of working face.The loose circle of surrounding rock was studied by drilling cuttings method and numerical simulation,and the sealing design was optimized.Finally,the extraction effect was analyzed by field measurement of gas parameters in the working face.The results show that the comprehensive extraction technology of coal seam pre-drainage,simultaneous drainage and mining,buried pipe in goaf and high-level borehole and the borehole sealing design based on the theory of surrounding rock loose circle can control coal seam gas well.The gas extraction amount is more than 54%,which controls the gas concentration of working face and roadway and ensures the safety of working face mining.

high gasgas extractiongas controlloose circle theorynumerical simulation

刘亚洲

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山西兰花集团东峰煤矿有限公司,山西晋城 048000

高瓦斯 瓦斯抽采 瓦斯治理 松动圈理论 数值模拟

2024

煤炭与化工
河北省化学工业研究院

煤炭与化工

影响因子:0.246
ISSN:2095-5979
年,卷(期):2024.47(10)