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过沟开采速度对浅埋煤层覆岩移动变形的影响研究
Influence of mining speed across trench on movement and deformation of overlying strata in shallow coal seams
【摘要】 为了研究过沟开采速度对浅埋煤层覆岩移动变形的影响,以陕北府谷庙哈孤矿区安山井田为研究对象,采用Rhino3D-FLAC3D耦合技术建立过沟模型,分别以4m/d、6m/d和8m/d的推进速度进行数值模拟,探讨了不同开采速度对覆岩变形的影响。研究表明:当以4m/d的速度对煤层进行开挖时,导水裂隙带高度、地表下沉值和水平移动值分别为42.2m、1.67m和0.2m;以8m/d的速度对煤层进行开挖时,导水裂隙带高度、地表下沉值和水平移动值分别为32m、1.01m和0.14m,相对于以4m/d的速度开采,其导水裂隙带高度、地表下沉值和水平移动值分别减少了24%、40%和31%。随着开采速度增加,覆岩移动变形量有所减小,因此为了减少开采过程中覆岩的移动变形量,在煤矿生产过程中,可根据实际情况,适当增加煤层推进速度。
【Abstract】 In order to study the influence of mining speed across trench on the movement and deformation of the overlying strata in shallow coal seams, the Anshan mine field in the Miaohagou mining area in northern Shaanxi was taken as the research object, and the trench model was established using Rhino3 D-FLAC3 D coupling technology. The 6 m/d and 8 m/d advancing speeds are numerically simulated, and the influence of different mining speeds on the deformation of the overburden was discussed. Research shows that: when the coal seam is excavated at a speed of 4 m/d, the height of the water-conducting fissure zone, the surface subsidence value and the horizontal movement value are 42.2 m, 1.67 m and 0.2 m, respectively; when the coal seam is excavated at a speed of 8 m/d, the height of the water-conducting fissure zone, the ground subsidence value and the horizontal movement value are 32 m, 1.01 m and 0.14 m, respectively, which are reduced by 24%, 40% and 31%, respectively, compared with mining at a speed of 4 m/d. As the mining speed increases, the overburden movement and deformation decreases. Therefore, in order to reduce the movement and deformation of the overlying rock during the mining process, the coal seam advance speed can be appropriately increased according to the actual situation.
【Key words】 mining speed; mining across trench; overburden failure; numerical simulation; shallow coal seam;
- 【文献出处】 煤炭工程 ,Coal Engineering , 编辑部邮箱 ,2022年07期
- 【分类号】TD325.1
- 【下载频次】121