|
|
|
| Study on the technology of draining water accumulated in old goaf by pre-buried pipe in No.12 Mine of Pingdingshan Coal |
| Nan Lichao, Tian Fangzheng |
| Henan Institute of Geophysical Space Information, Zhengzhou 450000, China |
|
|
|
|
Abstract Water accumulation in old goaf is one of the main factors threatening coal mine safety production. The Ji15 coal and Ji16-17 coal in the No.12 Mine of Pingdingshan Coal are close distance coal seams. The working face of Ji16-17 coal seam was seriously affected when mining by the overlying Ji15 coal and the water accumulation in the goaf of the coal seam. In order to realize the effective drainage of the water accumulation in the goaf, during the mining of No.31050 Face in Ji16-17 coal seam, the drilling was carried out in the floor gas drainage roadway to No.31050 Face in Ji16-17 coal seam, and the steel casing was pre-buried. Until the adjacent No.31030 Face in Ji16-17 coal seam was mined, a total of 56 853 m3 of water accumulated in old goaf was drained, which ensured the safe and efficient mining of the coal mine.
|
|
|
|
|
|
| [ 1 ] 董书宁,虎维岳. 中国煤矿水害基本特征及其主要影响因素[ J ]. 煤田地质与勘探,2007( 5 ):34 - 38.
[ 2 ] 李文平,乔 伟,李小琴,等. 深部矿井水害特征、评价方法与治水勘探方向[ J ]. 煤炭学报,2019,44( 8 ):2 437 - 2 448.
[ 3 ] 陈江峰,黄玉峰,熊法政. 承压水导升过程中微裂隙扩张分析[ J ]. 地质与勘探,2017,53( 1 ):157 - 163.
[ 4 ] 黄庆林,姚依林,孟亮亮,等. 水压对岩体的破坏作用及深部巷道底板增压突水试验研究[ J ]. 中州煤炭,2015( 5 ):19 - 23.
[ 5 ] 李 博. 浅埋煤层覆岩活动规律与顶板水涌出关系数值模拟研究[ D ]. 西安:西安科技大学, 2019.
[ 6 ] 狄胜同,贾 超,张少鹏,等. 华北平原鲁北地区地下水超采导致地面沉降区域特征及演化趋势预测[ J ]. 地质学报,2020,94( 5 ):1 638 - 1 654. |
|
|
|