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Analytical Investigation of Shaft Damages at West Elk Mine

机译:西麋鹿矿井井壁破坏的分析研究

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摘要

Several shear failures were observed in Shaft #1 at the Mountain Coal Company, LLC, West Elk Mine, after mining longwall Panel 23, 1,100 ft to the east of Shaft #1. It was speculated that this shear damage could be related to differential ground movement caused by in situ stress relief from the "stress shadow" of the caved zone above longwall Panel 23. A numerical study was conducted to assess the possibility of the shaft shear damage being caused by in situ stress relief and the potential for additional damage to Shaft #1 and two other nearby shafts, due to mining nearby longwall Panel 24. Three-dimensional (3D) models were built in FLAC~(3D) to simulate past and future mining near shafts, the estimated local anisotropic and directional horizontal stresses, and the overlying variable surface topography. The numerical analyses indicated that stress relief due to mining Panel 23 caused the shear damage to Shaft #land that additional damage to Shaft #1 and the other two shafts, would likely result from mining longwall Panel 24 Additional shear damage was documented in Shaft #1 when longwall Panel 24 was mined, confirming the results of the numerical analyses.
机译:在1号井以东1,100英尺的长壁面板23开采后,在西麋鹿山的Mountain Coal Company,LLC,1号井中观察到了几个剪切破坏。据推测,这种剪力破坏可能与长壁面板23上方塌陷区的“应力阴影”引起的原地应力释放引起的地面运动差异有关。进行了一项数值研究,以评估竖井剪力破坏的可能性。由于在附近的长壁面板24上开采而造成的原位应力释放以及对#1轴和附近两个其他井道的额外破坏的可能性所造成的。在FLAC〜(3D)中建立了三维(3D)模型以模拟过去和将来在竖井附近开采,估计的局部各向异性和定向水平应力以及上覆的可变表面形貌。数值分析表明,由于开采第23面板而造成的应力释放导致#竖井土地的剪切破坏,这可能是由于开采长壁面板24对#1竖井和其他两个竖井造成了额外的损害,第1竖井中记录了额外的剪切破坏。当开采长壁面板24时,证实了数值分析的结果。

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