Study on microseismic monitoring of structural water conductivity in working face under pressure mining
Gao Gang1,2,3
1. Hebei Coal Research Institute Co., Ltd.,Xingtai 054000, China;2. Key Laboratory of Mine Water Disaster Detection and Prevention and Control, Xingtai 054000, China; 3. Hebei Key Laboratory of Mine Microseismicity, Xingtai 054000, China
In order to study whether the structure and concealed structure would communicate with the deep aquifer during the mining of the working face with pressure mining, taking Zhaogu No.1 Mine as the research object, the microseism monitoring technology of mine water disaster was used to monitor and warn the mining stage of No.16091 Face. It was captured that during the period of the working face passing through the structure, the crushing near coal seam was intensified, but the number and proportion of deep events did not increase, reflecting that the fracture of the floor did not develop further downward. At the same time, the correlation between fault parameters and the maximum development depth of the event was analyzed to study the influencing factors of fault water conductivity. The results showed that the mining of the working face did not cause the enhancement of structural water conductivity. The fault drop had a greater influence on fault communicating deep flow field than the dip angle.
高 刚1,2,3. 带压开采工作面构造导水性微震监测研究[J]. 煤炭与化工, 2024, 47(9): 51-58.
Gao Gang1,2,3. Study on microseismic monitoring of structural water conductivity in working face under pressure mining. CCI, 2024, 47(9): 51-58.