ISSN 1004-4140
    CN 11-3017/P

    采动影响下红土层内裂隙带的时移电阻率法模拟与实测

    Numerical Simulation and Application of Time-lapse Resistivity Method in the Fracture Zone in a Red Soil Layer Under Mining Influence

    • 摘要: 陕北浅埋煤层采动可能引起保德组巨厚红土层隔水性能破坏,严重破坏生态环境。采用时移电阻率法监测红土层破坏范围,可为煤矿保水开采提供重要技术支撑。本文通过引入时空约束下时移反演方法,提升电阻率法对红土层深部裂隙带的分辨能力。数值模拟结果表明,相比传统的平滑约束时移反演,时空约束时移反演能更清晰的重建裂隙带的形态特征。特别是发育高度较低的裂隙带,时空约束时移反演体现了更强的分辨能力。将本文引入的方法应用于神府某矿区采动过程监测中,实测结果揭示裂隙带整体发育至高程1200 m,未完全穿透红土层,局部区域发育至地表,地表观测到的裂缝位置验证了实测结果。

       

      Abstract: Shallow coal seam mining activities in northern Shaanxi can damage the water-blocking capacity of the massive red soil layer of the Baode Formation, severely damaging the ecological environment. Monitoring the extent of damage to the red soil layer using the time-lapse resistivity method can provide crucial technical support for water-conserving coal mining. This study enhances the resolution capability of the resistivity method for deep fractures in the red soil layer by introducing a time-lapse inversion method under spatiotemporal constraints. Numerical simulation results indicate that, compared to traditional smooth constraint time-lapse inversion, the proposed spatial-temporal constraint time-lapse inversion can more clearly reconstruct the morphological characteristics of the fracture zone. This is especially true for fracture zones with lower development heights, where spatial-temporal constrained time-lapse inversion demonstrates stronger resolution capabilities. The method was subsequently applied to monitor mining activities in the Shenfu mining area. Actual measurements revealed that the fracture zone developed up to an elevation of 1200 m without completely penetrating the red soil layer. In some areas fractures extended to the surface, and their positions corresponded well with the simulation results.

       

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