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巨厚推覆体下奥灰水害探查治理定向钻进技术 被引量:10
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作者 周学年 程世贵 +3 位作者 夏小亮 朱印兵 纪卓辰 蒲治国 《煤炭工程》 北大核心 2021年第6期57-62,共6页
为有效治理新集二矿巨厚推覆体下底层煤开采面临的奥灰水害问题,依据在空间上以采区为单元的区域治理、在时间上超前治理和在注浆对象上由煤层底板CⅠ3和CⅡ3转变为C312灰岩的治理原则,采取地面定向钻进技术对2201和2301待采区施工2个... 为有效治理新集二矿巨厚推覆体下底层煤开采面临的奥灰水害问题,依据在空间上以采区为单元的区域治理、在时间上超前治理和在注浆对象上由煤层底板CⅠ3和CⅡ3转变为C312灰岩的治理原则,采取地面定向钻进技术对2201和2301待采区施工2个主孔、26个分支孔,累计进尺为28562.42m,累计注入水泥量为6278.13t。研究结果表明:地面定向钻进探查注浆技术实施后,区内观测奥灰水位的水0101长观孔水位较注浆前上涨了68.37m,太原组灰岩含水层富水性明显减弱,井下探放水钻孔单孔涌水量均小于5m3/h,保障了2201和2301采区10个工作面能够安全回采,解放煤炭资源储量约952.5万t。 展开更多
关键词 巨厚推覆体 奥灰水 超前探查治理技术 地面定向钻探 底层煤开采
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Numerical analysis of the destruction of water-resisting strata in a coal seam floor in mining above aquifers 被引量:2
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作者 Jiang Zhihai 《Mining Science and Technology》 EI CAS 2011年第4期537-541,共5页
With the increase in mining depth many mining areas in China have entered a period necessitating mining above aquifers. Production safety in coal mines in northern China is under serious threat from Ordovician karst w... With the increase in mining depth many mining areas in China have entered a period necessitating mining above aquifers. Production safety in coal mines in northern China is under serious threat from Ordovician karst water on coal seam floors, in order to analyze the destruction of water-resisting strata in floors of coal seams being mined and to achieve safe mining above deep aquifers, we established a numerical model of water-resisting strata, considering the structural characteristics and mechanical properties of a floor layered with hard and soft rock. We simulated the distribution characteristics of deformation, failure and seepage using the analytical module of fluid-structure interaction of FLAt:. We also obtained the corresponding stress distribution, deformation and flow vectors. Our results indi- cate that: (1) the advance of the working face causes water-resisting strata in goaf floors to form a deep double-clamped beam, subject to homogeneous loading at the bottom; (2) the two sides of the rock beam are subject 1~0 shear failure; (3) both sides of the rock seam at the bottom of the water-resisting strata are subject to tension and the greater the working face advance, the more serious the failure; C4) the original balance of the stress and seepage fields are broken and redistributed due to mining activities, especially the interaction of the abutment pressure in both sides of the goal; the lateral pressure on the goal floor and the water pressure on the floor of the aquifer promote floor heave and shear failure on both sides of the floor, forming a water-inrush passage. Our study results can provide references for the mechanism of water-inrush on mine floors. 展开更多
关键词 Mining above aquifer Water-resisting strata in floors Numerical simulation Seepage fieldStress field
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