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深井高地压巷道锚杆支护技术研究
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作者 李亚军 《内蒙古煤炭经济》 2014年第11期161-163,共3页
煤矿开采巷道越深,开采环境就越复杂,围岩变形的控制难度越大,安全性越低,巷道的支护也就越困难。通过对深井巷道的受力特点、破坏机理及支护理论的了解与分析,提出锚杆支护在深井巷道支护的优势及发展趋势与前景,这对煤矿的安全生产具... 煤矿开采巷道越深,开采环境就越复杂,围岩变形的控制难度越大,安全性越低,巷道的支护也就越困难。通过对深井巷道的受力特点、破坏机理及支护理论的了解与分析,提出锚杆支护在深井巷道支护的优势及发展趋势与前景,这对煤矿的安全生产具有指导意义。 展开更多
关键词 高压巷道 破坏机理 锚杆支护 围岩变形
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Instability mechanism and control technology of soft rock roadway affected by mining and high confined water 被引量:12
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作者 Li Guichen Jiang Zuohan +3 位作者 Lv Chuangxin Huang Chao Chen Gui Li Mingyuan 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第4期573-580,共8页
Based on deformation and failure characteristics of the second belt conveyor roadway at level II of Zhuxianzhuang coal mine, laboratory experiments, numerical calculation and field test were adopted to analyze the com... Based on deformation and failure characteristics of the second belt conveyor roadway at level II of Zhuxianzhuang coal mine, laboratory experiments, numerical calculation and field test were adopted to analyze the composition and microstructure of mudstone, the law of mudstone hydration and its strength weakening induced by water, the characteristics of surrounding rock deformation and failure under the action of confined water. Results showed that montmorillonite clay minerals accounted for as much as 76% of mudstone, with a large number of pores existing in the microstructure. Besides, as the molecular structure of montmorillonite changed, mudstone microstructure damage occurred with the macroscopic manifestation of its theological instability. Weakening degree of confined water on residual strength of mudstone was almost 50%. The instability mechanism of soft rock roadway caused by high confined water is that surrounding rock circulates the process of "fracture-seepage-mud ding-closed" twice, which weakens its strength and leads to roadway instability. A combined support technology, namely the, "high-toughness sealing layer + hollow grouting cables + full-length anchoring bolts with deep borehole" was proposed. Based on field observation, the soft rock roadway was controlled effectively, which also verified the effectiveness of new control technology for surrounding rock. 展开更多
关键词 High confined water Soft rock roadway Instability mechanism Control technology
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Mechanism and experiment of substituting high drainage roadway with directional long drilling group to extract pressure-relief gas
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作者 谢生荣 赵耀江 +3 位作者 张守宝 杨洪增 肖殿才 田春阳 《Journal of Central South University》 SCIE EI CAS 2012年第9期2591-2597,共7页
By establishing the numerical model in the vertical plane and the similar model in the horizontal plane of gas flow in goaf, the influence of high drainage roadway or drilling on the gas seepage field was analyzed, an... By establishing the numerical model in the vertical plane and the similar model in the horizontal plane of gas flow in goaf, the influence of high drainage roadway or drilling on the gas seepage field was analyzed, and the extraction mechanism was clarified. On this basis, the academic thought of directional long drilling group instead of high drainage roadway was put forward. And then using complex function theory, the permeation mechanical model of drilling group with circle distribution in the mining-induced fracture zone was established to explore the coupling relationship between the drilling quantity, extraction volume and the equivalent extraction rate of single drilling. Finally, combined with the concrete geological production conditions, the main parameters of directional long drilling group were determined. The distance between the drilling group center and the air-return roadway is 24 m, the height is 18 m, and the three drillings are in an approximate equilateral triangle distribution with a space of 8 m. The equivalent extraction square is 4.15 m2. It is shown that the effect of directional long drilling group is evident. The gas content in the upper comer is controlled below 0.95%, the content in the tail roadway is kept below the alarm value, and the content is over 50% in the drill, realizing the secure and effective extraction of coal and gas. 展开更多
关键词 high position fracture ring drilling group extraction seepage field complex function permeation mechanical model extraction disturbance
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