金属矿山
金屬礦山
금속광산
METAL MINE
2015年
4期
123-126
,共4页
综放开采%地表沉陷%覆岩破坏%防治
綜放開採%地錶沉陷%覆巖破壞%防治
종방개채%지표침함%복암파배%방치
Fully mechanized top-coal caving%Ground subsidence%Overburden failure%Prevention and treatment
为研究厚黄土下厚煤层综放开采地表沉陷和覆岩破坏规律,通过在工作面地表建立岩移观测站和地面钻孔水文勘探,进行了地表沉陷变形实测和覆岩破坏高度钻探测定。总结研究地表岩移观测站实测资料和覆岩破坏探测钻孔水文观测资料,得出厚黄土综放高强度条件下地表沉陷剧烈,曲线较陡,在下沉盆地边缘沉陷变形曲线收敛较慢,最大下沉速度偏大,采动影响范围偏远;覆岩破坏探测结果显示综放覆岩破坏异常发育,导水裂缝带高度与综放采厚近似成正比,裂高采厚比例系数平均为19.75。研究成果为黄土区综放地表开采损害防治和水体下采煤及顶板水害防治提供技术支撑。
為研究厚黃土下厚煤層綜放開採地錶沉陷和覆巖破壞規律,通過在工作麵地錶建立巖移觀測站和地麵鑽孔水文勘探,進行瞭地錶沉陷變形實測和覆巖破壞高度鑽探測定。總結研究地錶巖移觀測站實測資料和覆巖破壞探測鑽孔水文觀測資料,得齣厚黃土綜放高彊度條件下地錶沉陷劇烈,麯線較陡,在下沉盆地邊緣沉陷變形麯線收斂較慢,最大下沉速度偏大,採動影響範圍偏遠;覆巖破壞探測結果顯示綜放覆巖破壞異常髮育,導水裂縫帶高度與綜放採厚近似成正比,裂高採厚比例繫數平均為19.75。研究成果為黃土區綜放地錶開採損害防治和水體下採煤及頂闆水害防治提供技術支撐。
위연구후황토하후매층종방개채지표침함화복암파배규률,통과재공작면지표건립암이관측참화지면찬공수문감탐,진행료지표침함변형실측화복암파배고도찬탐측정。총결연구지표암이관측참실측자료화복암파배탐측찬공수문관측자료,득출후황토종방고강도조건하지표침함극렬,곡선교두,재하침분지변연침함변형곡선수렴교만,최대하침속도편대,채동영향범위편원;복암파배탐측결과현시종방복암파배이상발육,도수렬봉대고도여종방채후근사성정비,렬고채후비례계수평균위19.75。연구성과위황토구종방지표개채손해방치화수체하채매급정판수해방치제공기술지탱。
In order to study the law of ground subsidence and overburden failure induced by fully mechanized top coal caving under thick loess,the measurement of surface subsidence and deformation and the height of overburden failure are de-tected through the establishment of ground observation stations and hydro-geological drilling exploration in surface. A great number of field data from ground observation stations and hydro-geological drilling exploration are collected. It is shown that ground subsidence under fully-mechanized caving of thick loess moved intensively with steep subsidence curve. The converge of subsidence and deformation curve at the edge of basis grows slowly. Maximum subsidence velocity is higher,and mining influ-ence scope is much too far away. The detection of overlying rocks damage indicates that the overburden failure is developed ab-normally in mining with fully-mechanized top-coal caving system,and the height of the water conducted zone is directly propor-tional to the total mining thickness. The ratio of the fracture height and the mining thickness is obtained to be 19. 75 at aver-age. The research can provide technical support for controlling surface mining damage and roof water inrush in coal mining un-der water in loess region.