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水体下开采覆岩破断及裂隙演化规律

许国胜 李回贵 关金锋

煤矿安全2018,Vol.49Issue(4):42-45,49,5.
煤矿安全2018,Vol.49Issue(4):42-45,49,5.

水体下开采覆岩破断及裂隙演化规律

Laws of Overburden Strata Rupture and Fissure Evolution During Mining Under Water Body

许国胜 1李回贵 1关金锋1

作者信息

  • 1. 贵州工程应用技术学院 矿业工程学院,贵州 毕节 551700
  • 折叠

摘要

Abstract

In view of the important role of fracture development laws in safety evaluation during coal seam mining under the water body, based on the engineering background of full-mechanized caving mining under the reservoir, by the key strata theory, the combined rock beam theory, and similar physical simulation test method, we studied the breaking laws of overburden rock and the vertical displacement of rock strata, the development height of water conducting fractured zone and the evolution laws of overlying fissure network in the process of rock forming and critical layer breaking. The research result shows that: before and after the collapse of the main key stratum, the subsidence curve slope of observation points in the middle position of gob is larger, and the overburden stratum sinks in the vertical direction shapely; water conducting fractured zone height curve steps up with the periodic rupturing of combimed rock beams, and two steps spacing is the cycle of overburden rock rupture step distance; after the main key stratum breaking down, overburden rock water conducting fractured zone finally reaches the bottom of the inferior key stratum Ⅱ. Fracture network enrichment region mainly focused on the front and rear coal walls, and the fracture density in the crack area near the open-cut hole is greater than that in the lateral fissure of the stop line. Due to the fracture compaction of the fractured rock strata in the middle of the goaf, the fracture density curve of the model is skewed to the"saddle".

关键词

导水断裂带/裂隙演化/组合岩梁/关键层理论/相似模拟试验

Key words

water conducting fractured zone/cracks evolution/combined rock beam/key stratum theory/similar simulation test

分类

矿业与冶金

引用本文复制引用

许国胜,李回贵,关金锋..水体下开采覆岩破断及裂隙演化规律[J].煤矿安全,2018,49(4):42-45,49,5.

基金项目

贵州省重点学科资助项目(ZDXK[2016]13) (ZDXK[2016]13)

贵州省联合基金资助项目(LH字[2015]7596号) (LH字[2015]7596号)

煤矿安全

OA北大核心CSTPCD

1003-496X

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