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煤层宏观裂隙特征与瓦斯抽采研究 被引量:3
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作者 景少颖 崔洪庆 《煤炭技术》 CAS 2020年第6期64-68,共5页
为了利用煤层宏观裂隙,提高瓦斯抽采效率,在古汉山矿对二1煤层宏观裂隙进行了系统观测和统计分析。研究表明:古汉山矿二1煤层宏观裂隙可区分为大倾角、中倾角和小倾角3种类型;在不同的瓦斯地质单元中,3种类型宏观裂隙的发育程度、优势... 为了利用煤层宏观裂隙,提高瓦斯抽采效率,在古汉山矿对二1煤层宏观裂隙进行了系统观测和统计分析。研究表明:古汉山矿二1煤层宏观裂隙可区分为大倾角、中倾角和小倾角3种类型;在不同的瓦斯地质单元中,3种类型宏观裂隙的发育程度、优势发育方位、煤层的破坏程度和煤层渗透性存在很大差异,进而影响了穿层和顺层瓦斯抽采钻孔的抽采效率。提出了在不同瓦斯地质单元中,根据煤层宏观裂隙主要类型和优势发育方位,优化设计瓦斯抽采钻孔的方法,并取得了较好的实际应用效果。 展开更多
关键词 煤层宏观裂隙类型 煤层破坏特征 瓦斯地质单元 煤层瓦斯抽采
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Experimental investigation into stress-relief characteristics with upward large height and upward mining under hard thick roof 被引量:21
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作者 Ke Yang Xiang He +3 位作者 Litong Dou Wenjun Liu Li Sun Haisong Ye 《International Journal of Coal Science & Technology》 EI 2015年第1期91-96,共6页
According to geological conditions of No. 3 and No. 4 coal seams (namely A3 and B4) of the Pan'er coal mine and the parameters of panels 11223, 11224, and 11124 with fully-mechanical coal mining, we built 2D simila... According to geological conditions of No. 3 and No. 4 coal seams (namely A3 and B4) of the Pan'er coal mine and the parameters of panels 11223, 11224, and 11124 with fully-mechanical coal mining, we built 2D similar material simulation and FLAC3D numerical simulation models to investigate the development of mining-induced stress and the extraction effect of pressure-relief gas with large height and upward mining. Based on a comprehensive analysis of experimental data and observations, we obtained the deformation and breakage characteristics of strata overlying the coal seam, the development patterns of the mining-induced stress and fracture, and the size of the stress-relief area. The stress-relief effect was investigated and analyzed in consideration with mining height and three thick hard strata. Because of the group of three hard thick strata located in the main roof and the residual stress of mined panel 11124, the deformation, breakage, mining-induced stress and fracture development, and the stress-relief coefficient were discontinuous and asymmetrical. The breakage angle of the overlying strata, and the compressive and expansive zones of coal deformation were mainly controlled by the number, thickness, and strength of the hard stratum. Compared with the value of breakage angle derived by the traditional empirical method, the experimental value was lower than the traditional results by 3°-4°below the hard thick strata group, and by 13°-19° above the hard thick strata group. The amount of gas extracted from floor drainage roadway of B4 over 17 months was variable and the amount of gas per month differed considerably, being much smaller when panel 11223 influenced the area of the three hard thick strata. Generally, the stress-relief zone of No. 4 coal seam was small under the influence of the hard thick strata located in the main roof, which played an important role in delaying the breakage time and increasing the breakage space. In this study we gained understanding of the stress-relief mechanism influenced by the hard thick roof. The research results and engineering practice show that the main roof of the multiple hard thick strata is a critical factor in the design of panel layout and roadways for integrated coal exploitation and gas extraction, provides a theoretical basis for safe and high-efficient mining of coal resources. 展开更多
关键词 Integrated coal exploitation and gas extraction Large mining height Stress-relief effect Hard thick strata Mining-induced stress
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