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长壁采空区采动孔隙的采厚效应研究

孙健

煤矿安全2019,Vol.50Issue(10):49-53,5.
煤矿安全2019,Vol.50Issue(10):49-53,5.DOI:10.13347/j.cnki.mkaq.2019.10.011

长壁采空区采动孔隙的采厚效应研究

Effect of Mining Pore Thickness in Longwall Goaf

孙健1

作者信息

  • 1. 中煤科工集团重庆研究院有限公司,重庆 400037;瓦斯灾害监控与应急技术国家重点实验室,重庆 400037
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摘要

Abstract

Aiming at the existing problem of void distribution in longwall goaf, through the similar simulation and theoretical analysis, the effect of mining thickness on the distribution of mining-induced pores in compression and tension zones of the longwall old goaf is obtained when mining thickness is 6 m, 8 m and 12 m respectively. When mining thickness increased from 6 m to 8 m to 12 m, fracture expansion coefficient and porosity of mining-induced fractures in collapse zone of compression zone increases first and then decreases with mining thickness, but overall, the fracture expansion coefficient tended to be 1.1, and the porosity tended to be 0.1. The porosity of compression fissure zone is close to 0.05, there are not only cracks but also holes in the tensile zone, and with the increase of the mining thickness, the volume of the hole increases first and then decreases. With the increase of mining thickness, the number of holes and porosity in the fracture angle extension zone increases obviously. Only when the mining thickness reaches a certain level, when the water-conducting fracture zone develops to the bottom of the key layer and stagnates, the separation hole can form. Finally, the correlation between the porosity or void volume of the tensile zone of the old longwall goaf and the mining height of coal seam, the height from coal seam, the comprehensive coefficient of crushing and swelling, and the deflection of the key layer is deduced.

关键词

长壁老采空区/采动孔隙/采厚效应/孔隙率/ 采动裂隙碎胀系数

Key words

longwall old goaf/mining fissure/thickness effect/porosity/coefficient of mining-induced fracture expansion

分类

矿业与冶金

引用本文复制引用

孙健..长壁采空区采动孔隙的采厚效应研究[J].煤矿安全,2019,50(10):49-53,5.

煤矿安全

OA北大核心CSTPCD

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