中远距离煤层群保护层多次开采卸压效果研究

    Study on pressure relief effect of multiple mining of protective layer in medium and long distance coal seam group

    • 摘要: 针对复杂条件下中远距离煤层群保护层开采效果不明确的问题,以山西新景矿煤层群开采为工程背景,采用数值模拟与物理相似模拟相结合的方法,研究下行开采顺序下中远距离煤层群的多次卸压效果,分析被保护层采动应力和移动变形的演化规律,并通过现场试验验证保护层开采的卸压效果。数值模拟结果表明:8#、9#、15#煤层的工作面推进至110 m时,工作面前方煤体的应力集中系数分别为0.36、0.25、1.30;3#煤层开采完毕后下方8#、9#煤层的最大膨胀变形量分别为165.4、57.8 mm,9#煤层开采完毕后下方15#煤层的最大膨胀变形量仅为11.4 mm。相似模拟试验结果显示:当工作面推进至190 m时,8#、9#、15#煤层前方的应力集中系数分别为0.90、0.84、1.14,煤层群保护层多次开采引发的叠加卸压效应使覆岩层位移场出现明显叠加变化,3#煤层顶板最大下沉量由一次采动时的0.51 m增加至三次采动时的1.16 m。数值模拟和相似模拟均表明:在下行开采过程中,保护层3#与8#煤层的开采对下部被保护层产生了显著的卸压效应,而15#煤层基本不受上部3#、8#、9#煤层多次采动卸压的影响。现场考察试验结果显示:3109工作面开采后,8#、9#煤层的最大卸压比分别达到35.65%和21.59%,对应的最大相对膨胀变形量分别为10.31‰和5.73‰。

       

      Abstract: Aiming at the problem that the effect of protective layer mining of medium and long distance coal seam group under complex conditions is not clear, this study takes the coal seam group mining of Shanxi Xinjing Coal Mine as the engineering background, and uses the method of numerical simulation and physical similarity simulation to study the multiple pressure relief effect of medium and long distance coal seam group under the downward mining sequence. The evolution law of mining stress and movement deformation of protected layer is analyzed, and the pressure relief effect of protective layer mining is verified by field test. The numerical simulation results show that when the working faces of 8#, 9# and 15# coal seams advanced to 110 m, the minimum stress concentration coefficients of the coal body in front of the working face are 0.36, 0.25 and 1.30, respectively. After the completion of 3# coal seam mining, the maximum expansion deformation of 8# and 9# coal seam is 165.4 mm and 57.8 mm respectively, and the maximum expansion deformation of 15# coal seam is only 11.4 mm after the completion of 9# coal seam mining. The results of similar simulation experiments show that when the working face is advanced to 190 m, the stress concentration factors in front of 8#, 9# and 15# coal seams are 0.90, 0.84 and 1.14, respectively. The superimposed pressure relief effect caused by multiple mining of the protective layer of the coal seam group makes the displacement field of the overlying strata appear obvious superimposed changes. The maximum subsidence of the 3# coal seam roof increases from 0.51 m under primary mining to 1.16 m under tertiary mining. The results of the numerical simulation and similar simulation show that in the process of downward mining, the mining of the protective layer 3# and 8# coal seams has a significant pressure relief effect on the lower protected layer, while the 15# coal seam is basically not affected by the multiple mining pressure relief of the upper 3#, 8# and 9# coal seams. The results of field investigation and test show that after the mining of 3109 working face, the maximum pressure relief ratios of 8# and 9# coal seams reach 35.65% and 21.59% respectively, and the corresponding maximum relative deformation is 10.31‰ and 5.73‰ respectively.

       

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