基于陆探一号卫星数据的采煤工作面地表沉陷监测研究

Research on Surface Subsidence Monitoring of Coal Mining Working Faces Based on LT−1 Satellite Data

  • 摘要: 为探究采煤工作面地表沉陷时空演化规律,依托国产陆探一号(LT−1)卫星影像,采用D−InSAR技术对柠条塔矿区S1216工作面2025年3月12日—2025年6月4日地表沉陷开展时序监测与分析。结果表明:(1)工作面回采过程中,地表沉陷呈时序递进扩展特征,沉陷面积由0.2 km2增至0.73 km2,D−InSAR监测到最大沉降量由−60 mm增至−110 mm,采煤工作面沉陷盆地呈椭圆形态且具有显著的倾向非对称性,相邻采空区侧沉陷波及范围远大于相邻实煤体侧;(2)2025年3—6月工作面回采期间,地表沉陷逐步发育,D−InSAR监测到的倾向剖面最大下沉量由−46 mm增至−103 mm,沉陷盆地深度显著加深、影响范围同步扩展,验证了LT−1卫星D−InSAR技术在采煤工作面沉陷监测中的适用性;(3)沉陷盆地影响角定量分析表明,随着工作面推采,采空区侧倾向影响角由40.17°减小为27.73°,实煤体侧倾向影响角由72.79°减小为37.94°,走向超前影响角由72.2°减小为68.6°,走向滞后影响角由33.4°减小为13.8°。研究成果为国产LT−1卫星采煤沉陷监测应用及矿区沉陷灾害防控提供了参考。

     

    Abstract: To reveal the spatiotemporal evolution pattern of surface subsidence above coal mining working faces, time−series monitoring and analysis of surface subsidence at Working Face S1216 in the Ningtiaota Mining Area (March 12 to June 4, 2025) were conducted using D−InSAR technology with images acquired by the domestic LuTan−1 (LT−1) satellite. The results show that:(1) During the mining process of the working face, surface subsidence exhibits a progressive expansion trend over time. The subsidence area increases from 0.2 km2 to 0.73 km2, and the maximum subsidence detected by D−InSAR rises from 60 mm to 110 mm. The subsidence basin takes an elliptical shape with pronounced asymmetry along the dip direction, and the subsidence influence range on the goaf−adjacent side is significantly larger than that on the solid coal−adjacent side.(2) From March to June 2025, surface subsidence develops continuously as the working face advances. The maximum subsidence along the dip profile monitored by D−InSAR increases from −46 mm to −103 mm. Both the depth and influence scope of the subsidence basin expand notably, which verifies the applicability of LuTan−1 satellite−based D−InSAR technology for subsidence monitoring of coal mining working faces.(3) Quantitative analysis of the influence angles of the subsidence basin indicates that with the continuous advancement of the working face, the dip influence angle on the goaf side decreases from 40.17° to 27.73°, the dip influence angle on the solid coal side drops from 72.79° to 37.94°, the advance influence angle along the strike reduces from 72.2° to 68.6°, and the lag influence angle along the strike decreases from 33.4° to 13.8°.These research findings provide a reference for the application of the domestic LuTan−1 satellite in coal mining subsidence monitoring, as well as for the prevention and control of subsidence disasters in mining areas.

     

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