|
|
|
| Study on instability and safe empty roof distance of deep rock roadway empty roof area |
| Zhang Taotao 1, Liu Jianzhuang 1, 2 *, Wang Shengchuan 1, Yan Chuang 1, He Junxiu 1 |
| Kailuan Energy Chemical Co., Ltd., Tangshan 063007, China; North China University of Science and Technology Hebei province Key Laboratory of Mining Development and Security Technology,Tangshan 063210, China |
|
|
|
|
Abstract In order to solve the safety problems of roof fall and rib spalling in the hollow roof area during the excavation of deep mine rock roadway, the return air duct of-950 fourth mining area in Lvjiatuo Mine was taken as the engineering background, and the research was carried out by combining theoretical analysis with numerical simulation. The radius of the plastic zone after the excavation of the roadway is calculated to be 3.19 m by using the Castner formula. Based on this, a mechanical model of the rock beam in the empty roof area with one end simply supported and one end fixed is established, and the expression of the maximum empty roof distance is derived. The research results show that the safe empty top distance of the return air duct in the-950 fourth mining area is 2.6 m ; gDEM was used to simulate and analyze the stress and damage of surrounding rock under different working conditions. The simulation results show that the supporting effect of the front rock wall is significantly higher than that of the rear anchor rod on the roof. The stress and damage of the surrounding rock under the type III working condition are not much different from those under the type II working condition. Considering the limited depth of the blast hole, it is more appropriate when the empty top distance is 2.4 m.
|
|
|
|
|
|
| [ 1 ] 刘振宇. 生辉矿20202工作面巷道空顶区顶板稳定性研究[ J ]. 煤炭与化工,2020,43( 12 ):9 - 11,15.
[ 2 ] 孟维波. 掘进工作面空顶区顶板围岩结构稳定性及关键影响因素分析[ J ]. 机械管理开发,2020,35( 8 ):132 - 134.
[ 3 ] 赵明洲,方 娟,温良霞. 薄层状顶板煤巷掘进迎头矿压显现规律与空顶区顶板失稳机理[ J ]. 矿业研究与开发,2022,42( 11 ):88 - 95.
[ 4 ] 惠兴田,刘 伟,郭风景,等. 基于连采施工工艺巷道掘进空顶距研究[ J ]. 煤炭工程,2013,24( 2 ):69 - 71.
[ 5 ] 常聚才,谢广祥. 深部巷道围岩力学特征及其稳定性控制[ J ]. 煤炭学报,2009,34( 7 ):881 - 886.
[ 6 ] 范明建. 深井大断面煤巷掘进合理空顶距的确定[ J ]. 煤炭技术,2016,35( 11 ):60 - 62.
[ 7 ] 唐卫涛,李圣岩. 破碎顶板条件下巷道掘进空顶距研究[ J ]. 煤矿安全,2013,10( 4 ):38 - 40.
[ 8 ] 马秉红. 大断面巷道掘进时合理空顶距的确定方法[ J ]. 山西科技,2003( 4 ):64 - 65.
[ 9 ] 安 通. 大断面拱形巷道综掘掘支作业合理空顶距探讨[ J ]. 江西煤炭科技,2020( 2 ):28 - 30.
[ 10 ] 王 威. 巷道掘进施工作业中空顶区顶板稳定性控制研究[ J ]. 西部探矿工程,2020,32( 6 ):172 - 174.
[ 11 ] 杜鹏程. 三交河矿煤巷快速掘进施工工艺优化研究与应用[ J ]. 煤炭与化工,2019,42( 5 ):16 - 19.
[ 12 ] 朱海珍. 煤巷快速掘进空顶距合理留设及施工优化[ J ]. 煤炭与化工,2019,42( 5 ):27 - 29,34. |
|
|
|