槽波地震勘探技术在超宽工作面夹矸发育区探测中的应用研究

Application of in-seam seismic exploration technology for detection of dirt band developed area in ultra-wide working faces

  • 摘要:
    目的 为了研究槽波地震勘探技术在超宽工作面构造探测的可行性,
    方法 选择韩城矿区桑树坪二号煤矿三采区为研究对象,依据矿井地质资料构建含夹矸层和夹矸发育区的数值模型。分析XYZ三个分量的正演模拟单炮记录的波场与频散特征,研究槽波能量衰减系数在超宽工作面夹矸发育区探测的探测效果。
    结果 正演模拟与现场实际探测结果显示,激发井深5 m、单孔药量600 g采集参数产生透射槽波可以穿透切眼倾向长620 m的超宽工作面,且夹矸发育区在槽波能量衰减系数成像图中有较明显的反映。
    结论 利用槽波地震勘探技术超前精准探查超宽工作面内构造发育情况,可为工作面巷道设计与回采提供科学依据。

     

    Abstract: To investigate the feasibility of in-seam seismic exploration technology for detecting geological structures in ultra-wide working faces, the No.3 mining district of Sangshuping No.2 Coal Mine in the Hancheng mining area was selected as the study site. Based on mine geological data, a numerical model containing dirt band and dirt band developed zones was constructed. The wavefield and dispersion characteristics of forward-modeled single-shot records for the X, Y, and Z components were analyzed, and the detection effectiveness of the in-seam wave energy attenuation coefficient in identifying dirt band developed zones within an ultra-wide working face was examined. Forward modeling and field detection results show that with acquisition parameters of a shot hole depth of 5 m and a charge of 600 g per hole, transmitted in-seam waves can penetrate the extra-wide working face with a dip length of 620 m from the open-off cut, and the dirt band developed zone is clearly reflected in the in-seam wave energy attenuation coefficient imaging map. Using in-seam seismic exploration technology to accurately detect structural development in advance within ultra-wide working faces will provide a scientific basis for the design of working face roadways and mining operations.

     

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