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地表水体下厚煤层综放工作面安全开采技术
引用本文:王晶.地表水体下厚煤层综放工作面安全开采技术[J].科学技术与工程,2021,21(10):3972-3977.
作者姓名:王晶
作者单位:吕梁学院矿业工程系, 吕梁033000
摘    要:为了保证地表水体下综放工作面安全回采.以山西某矿为试验矿井,采用钻孔电视和分段注水试验对矿井导水裂缝带发育高度进行探测,对地表沉降进行了监测分析,并对水体下工作面开采进行了涌水量监测,实现了水体下工作面的安全回采.研究结果表明:厚煤层综放工作面导水裂缝带发育高度为119.7~127.2 m,裂采比为19.9~21.1;工作面回采前裂隙数量为1~2条,宽度以4 mm为主.当工作面回采后,在132~148 m范围内,裂隙数量最多增加到7条,裂隙宽度可达8 mm.在148~160 m范围内,裂隙数量和宽度与工作面回采前持平;工作面回采后,地表最终产生拉裂缝,最大深度为6.5 m,不会造成地表河水的突然下泻;地表水体下工作面回采过程中无留设保护煤柱,最大涌水量与非水体下工作面开采持平,工作面回采过程中地表水未进入到工作面,实现了安全回采,为类似矿井提供了借鉴.

关 键 词:矿井工程  水体下采煤  综放工作面  导水裂缝带
收稿时间:2020/6/11 0:00:00
修稿时间:2020/12/31 0:00:00

Research on Safety Mining of Fully Mechanized Caving Face in Thick Coal Seam Under Surface Water Body
Wang Jing.Research on Safety Mining of Fully Mechanized Caving Face in Thick Coal Seam Under Surface Water Body[J].Science Technology and Engineering,2021,21(10):3972-3977.
Authors:Wang Jing
Institution:luliang university
Abstract:The safe mining of coal resources under surface water is of great significance for the high-yield and efficient development of coal mines. Taking a certain mine in Shanxi as a test mine, using borehole television and segmented water injection test to detect the development height of the water guide fracture zone, Monitored and analyzed the ground subsidence, and monitored the amount of water inflow from the mining of the working face under the water body to realize the safe recovery of the working face under the water body. The research results show that: the development height of the water-conducting fracture zone in the fully mechanized caving face of the thick coal seam is 119.7-127.2m, and the crack-to-production ratio is 19.9-21.1; The number of cracks before mining in the working face is between 1-2mm, and the width is mainly 4mm, After working face mining, within the range of 132-148m, the number of cracks will increase to 7 at most, and the width of cracks can reach 8mm, in the range of 148-160m, the number and width of cracks are the same as those before working face mining; After the working face is mined, the surface will eventually have tensile cracks with a maximum depth of 6.5m, which will not cause sudden diarrhea; no protective coal pillars are left during the mining process under the surface water body, the maximum water inflow is the same as the mining under the non-aqueous body working surface, the surface water does not enter the working surface during the mining process and safe mining, It provides a reference for similar mines.
Keywords:mine  engineering  coal  mining under  water body  fully mechanized  caving face  water flowing  fractured zone
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