|
|
|
| Prediction and evaluation of shaft water inflow in Yingjun No. 3 Mine |
| Fu Jingjing |
| The first hydrogeological team of China Coal Geology administration, Handan 056004, China |
|
|
|
|
Abstract In this paper, according to the hydrogeological parameters obtained from the pumping test of the sub aquifer in three shafts of Yingjun No. 3 Mine, the water inflow of the main shaft, auxiliary shaft and return air shaft of Yingjun No. 3 coal mine was predicted by using the large well method, for the failure pumping test of the aquifer in the whole well section, and the situation was unable to obtain the hydrogeological parameters of all the aquifer in the single well, According to the conditions of simple geological structure, basically no formation inclination, and close distance between the well inspection hole and the center of the well shaft, based on the hydrogeological parameters obtained in this hole and the maximum hydrogeological parameters of the pumping test obtains the water inflow of the aquifer, the forecast results were analyzed. Finally, the freezing method and the process were given.
|
|
|
|
|
|
| 1 ] 吴高权. 矿山竖井工程勘察井筒涌水量预测[ J ]. 世界有色金属,2019( 9 ):251 - 252.
[ 2 ] 徐 慧,牟 义,邱 浩,等. 基于层次分析法的井筒涌水量预测效果评价[ J ]. 中国矿业,2018( 7 ):126 - 129.
[ 3 ] 丁国辉. 结合流量测井的混合稳定流求参法预测井筒涌水量[ J ]. 煤炭技术,2016( 5 ):155 - 157.
[ 4 ] 武 强,赵苏启. 煤矿防治水手册[ M ]. 北京:煤炭工业出版社,2013.
[ 5 ] 李 博. 内蒙古鲁蒙能源开发有限公司鹰骏三号矿井井筒检查孔地质报告[ R ]. 邯郸:中国煤炭地质总局华盛水文地质勘察工程公司,2020. |
|
|
|