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Stress distribution rule of roadway affected by overhead mining in gently inclined coal seams group 被引量:5

Stress distribution rule of roadway affected by overhead mining in gently inclined coal seams group
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摘要 In light of the severe deformation and destruction of the district raise tunnel in the mining area at the northern part of the Lubanshan colliery, by the theoretic analysis and numerical simulation, both the mining stress distribution in seams group and the deformation and destruction mechanism of floor district raise were investigated. The results show that, at the maximum vertical distance of 40 m, the abutment stress has an influence on the recovery of 2# and 3# coal seam and 8# coal seam at distance of 30 m. As a result, the recovery of 8# is rather than those of 2# or 3# coal seam, which contributes to the deformation and destruction of the district raise surrounding rock. The major factors affecting the abutment stress include the mining depth, mining height, residual gob space, adjacent working faces and short spacing coal seam recovery. In light of the severe deformation and destruction of the district raise tunnel in the mining area at the northern part of the Lubanshan colliery, by the theoretic analysis and numerical simulation, both the mining stress distribution in seams group and the deformation and destruction mechanism of floor district raise were investigated. The results show that, at the maximum vertical distance of 40 m, the abutment stress has an influence on the recovery of 2# and 3# coal seam and 8# coal seam at distance of 30 m. As a result, the recovery of 8# is rather than those of 2# or 3# coal seam, which contributes to the deformation and destruction of the district raise surrounding rock. The major factors affecting the abutment stress include the mining depth, mining height, residual gob space, adjacent working faces and short spacing coal seam recovery.
出处 《中国有色金属学会会刊:英文版》 CSCD 2011年第S3期529-535,共7页 Transactions of Nonferrous Metals Society of China
基金 Project(51104176)supported by the National Natural Science Foundation of China
关键词 coal seams group STRESS distribution district RAISE SURROUNDING rock deformation and DESTRUCTION ABUTMENT STRESS coal seams group stress distribution district raise surrounding rock deformation and destruction abutment stress
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