Experimental study on characteristics of grounawater fracture in coal mine overlying rock

被引:0
|
作者
Li H. [1 ]
Cao Z. [1 ]
Wu B. [1 ]
Chi M. [1 ]
Zhang B. [1 ]
机构
[1] State Key laboratory of Water Resource Protection and Utilization in Coal Mining, Beijing Institute of Low Carbon and Clean Energy, Beijing
关键词
advantage channel; groundwater seepage; overlying rock fissure; traveltime; underground reservoir;
D O I
10.13199/j.cnki.cst.2021-1405
中图分类号
学科分类号
摘要
The seepage characteristics of groundwater in the overlying fissures are the key factors to be considered in the later maintenance of coal mining and goaf, especially in the underground reservoir construction area of coal mines. It is also an important part of coal mine underground reservoir. In shallow groundwater-rich areas or under extreme summer rainfall conditions, underground reservoirs form vertical recharge, and analyzing the seepage characteristics of groundwater in overlying fissures provides a scientific basis for the safe operation of coal mine underground reservoirs and the protection of groundwater resources. In this study, the solid-liquid coupling similarity model test was used to obtain the development and stability of the overlying fissures in the mining area and the characteristics of groundwater seepage after the aquifer was connected. The analysis showed that the large abscission fissures and micro-fissures that extend far and wide are mostly water storage., the vertical fissures running through multiple rock layers have strong water conductivity, and the hydraulic connection between the separation layer fissures is mainly formed by the vertical fissures in the two sides. Under the condition of vertical recharge, groundwater first infiltrates along the vertical fissures in an unsaturated manner, and is gradually saturated regionally from the upper and lower overlying fissures, finally forming a stable saturated infiltration form. On this basis, a mathematical model of groundwater seepage in saturated seepage state is established, and the numerical method is used to solve it. It is verified with similar simulation experiments that vertical fractures are the main water conduction channels, and their water conduction can account for up to 97%. At the same time, the migration speed of groundwater in vertical fractures is also many orders of magnitude higher than that in abscission fractures. Finally, through the sensitivity analysis, it is concluded that the vertical fracture seepage is positively correlated with the fracture development degree and the total water inflow, and negatively correlated with the rock permeability. The migration time of groundwater in overlying fissures is negatively correlated with the degree of fissure development, rock permeability and total water inflow. © 2023 China Coal Society. All Rights Reserved.
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页码:168 / 176
页数:8
相关论文
共 30 条
  • [1] GU Dazhao, Theory framework and technological system of coal mine underground reservoir[J], Journal of China Coal Society, 40, 2, (2015)
  • [2] GU Dazhao, YAN Yongguo, ZHANG Yong, Et al., Experimental study and numerical simulation for dynamic response of coal pillars in coal mine underground reservoir[J], Journal of China Coal Society, 41, 7, (2016)
  • [3] CAO Zhiguo, LI Quansheng, DONG Binqi, Water resource protection and utilization technology and application of coal mining in Shendong Mining Area[J], Coal Engineering, 46, 10, (2014)
  • [4] CAO Zhiguo, HE Ruimin, WANG Xingfeng, Coal mining affected to underground water and underground water storage and utilization technology[J], Coal Science and Technology, 42, 12, (2014)
  • [5] GU Dazhao, Modern mining of water resources and surface ecological protection technology for coal in the energy "Golden Triangle"[J], Chinese Engineering Science, 15, 4, (2013)
  • [6] HU Zhenqi, LONG Jinghua, WANG Xinjing, Self-healing, natural and artificial restoration of ecological environment for coal mining[J], Journal of China Coal Society, 39, 8, (2014)
  • [7] pp. 125-127, (2012)
  • [8] pp. 139-147, (2015)
  • [9] (2003)
  • [10] LI Chunrui, Research on the relationship between the temporal and spatial evolution of overlying rock fissure field and gas flow in high-intensity mining, (2009)