煤炭工程 ›› 2021, Vol. 53 ›› Issue (4): 115-119.doi: 10.11799/ce202104024

• 研究探讨 • 上一篇    下一篇

乌东煤矿地下水水化学特征及其指示

刘旭东,许峰,石磊,王世东,刘基   

  1. 中煤科工集团西安研究院
  • 收稿日期:2020-03-31 修回日期:2020-07-14 出版日期:2021-04-20 发布日期:2021-05-17
  • 通讯作者: 刘基 E-mail:g73018606@126.com

Hydrochemical Characteristics of Groundwater in Wudong Mine and Its Significance

  • Received:2020-03-31 Revised:2020-07-14 Online:2021-04-20 Published:2021-05-17

摘要: 为了研究乌东煤矿煤层顶板含水层之间的水力联系,采用了统计分析、Piper三线图、Gibbs图等方法定性分析了基岩地下水、第四系地下水以及地表水之间的水力联系。利用不同水体的Cl-浓度差异性,计算了相邻含水层之间的水力联系度,定量判别了它们之间的水力联系程度。结果发现,所有地下水样品的pH介于7.1~8之间,都为弱碱性水。随着含水层埋深的加大,地下水TDS逐渐增大,地表水和第四系地下水TDS均低于基岩含水层地下水。基岩地下水、第四系地下水和地表水主要的水化学类型分别为Cl·SO4-Na、HCO3·SO4-Na·Ca、SO4·Cl·HCO3-Na和SO4·Cl·HCO3-Na·Ca。基岩地下水样品受到浓缩作用影响,地表水和第四系地下水受到岩石风化-蒸发影响。同时研究区地下水和地表水中还发生了阳离子反交换作用。第四系地下水和地表水的联系度为0.361,联系程度为中等|第四系和基岩地下水之间的联系度为0.404,联系程度为低。此结果可为后期矿井涌水量预计及防治水工作提供参考依据。

关键词: 水化学特征, 水力联系, Piper三线图, Gibbs图

Abstract: The hydrochemical characteristics of groundwater are helpful to judge the hydraulic connection between adjacent aquifers. In this paper, Wudong Coal Mine is taken as the research object, and the hydraulic connections among bedrock groundwater, Quaternary groundwater and surface water are qualitatively analyzed by using general hydrochemical characteristics analysis, Piper three-line diagram and Gibbs diagram. Using the difference of Cl- concentration in different water bodies, the hydraulic connection degree between adjacent aquifers is calculated, and the hydraulic connection is quantitatively determined. The results showed that the pH of all groundwater samples ranged from 7.1 to 8, which were weakly alkaline water. As the depth of aquifer increases, the TDS of groundwater gradually increases, and the TDS of surface water and quaternary groundwater are lower than that of bedrock aquifer. The main hydrochemical types of bedrock groundwater, quaternary groundwater and surface water are Cl·SO4-Na, HCO3·SO4-Na·Ca, and SO4·Cl·HCO3-Na and SO4·Cl·HCO3-Na·Ca, respectively. Bedrock groundwater samples are affected by concentration, surface water and quaternary groundwater are affected by weathering and evaporation of rocks. At the same time, cation exchange occurred in groundwater and surface water in the study area. The connection degree between Quaternary groundwater and surface water is 0.361, which is medium. The connection degree between Quaternary and bedrock groundwater is 0.404, which is low. The results can provide a reference basis for the prediction of mine water inflow and the prevention and control of water inflow in the later period.