多煤层重复采动地面沉降规律数值模拟及实测分析

    Numerical simulation and measured analysis of ground subsidence law caused by repeated mining in multiple coal seams

    • 摘要: 针对新疆阿艾矿区多煤层重复采动引发的地面沉降问题,本文以阿艾矿区某矿下1煤与下5煤生产地质条件为基础,采用FLAC3D数值模拟、SBAS-InSAR与GPS监测技术相结合的方法,分析了多煤层重复采动条件下地面沉降量及范围的动态演化规律。研究结果表明:多煤层采动条件下,地面沉降呈现明显的非对称性分布特征,下层煤开采使得矿区地面沉降大小及范围进一步增大,FLAC3D模拟结果显示多煤层开采后地面最大下沉量为−211.8 mm,SBAS-InSAR监测结果显示地面最大下沉量为−229.69~−251.17 mm,2种方法得到的地面下沉量拟合度高。FLAC3D与InSAR技术相结合的方法能够准确可靠地进行矿区多煤层重复采动条件下地面沉降情况的监测与分析,为采空区稳定性分析和地面形变的预测提供有效指导。

       

      Abstract: Aiming at the ground subsidence problem caused by the repeated mining of multiple coal seams in the A'ai Mining Area of Xinjiang, based on the production geological conditions of Lower coal No. 1 and Lower Coal No. 5 in a certain mine of the Ai mining area, this paper adopts the method combining FLAC3D numerical simulation, SBAS-InSAR and GPS monitoring technology to analyze the dynamic evolution law of ground subsidence amount and range under the repeated mining of multiple coal seams. The research results show that: Under the multi-coal seam mining conditions, ground subsidence shows obvious asymmetric distribution characteristics. The mining of lower coal layers further increases the magnitude and range of ground subsidence in the mining area. The FLAC3D simulation results show that the maximum ground subsidence after multi-coal seam mining is −211.8 mm. The SBAS-InSAR monitoring results show that the maximum ground subsidence is −229.69 to −251.17 mm, and the ground subsidence obtained by the two methods has a high degree of fit. The method combining FLAC3D and InSAR technology can accurately and reliably monitor and analyze the ground settlement situation under the repeated mining conditions of multiple coal seams in the mining area, providing effective guidance for the stability analysis of the goaf and the prediction of ground deformation.

       

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