煤炭工程 ›› 2026, Vol. 58 ›› Issue (4): 176-185.doi: 10.11799/ce202604021

• 研究探讨 • 上一篇    下一篇

采煤扰动下青龙煤矿地下水动力-水化学协同演化规律

潘 玥,刘宏静,逯文哲,谢秋宇,苏彦羽,邹浚瑶   

  1. 南京工业大学 交通运输工程学院,江苏 南京 211816

  • 收稿日期:2025-04-27 修回日期:2025-08-14 出版日期:2026-04-10 发布日期:2026-05-12
  • 通讯作者: 潘玥 E-mail:panyue_hydro@njtech.edu.cn

Co-evolution law of groundwater dynamics and hydrochemistry in Qinglong Coal Mine under coal mining disturbance #br#

  • Received:2025-04-27 Revised:2025-08-14 Online:2026-04-10 Published:2026-05-12

摘要:

煤矿大规模开采易引发地下水酸化、咸化等水环境问题,威胁矿井安全生产与区域生态安全。为揭示采煤扰动下地下水水化学的演化规律,以贵州省青龙煤矿为研究对象,综合水文地球化学分析与数值模拟,构建地下水动力场及溶质运移模型,系统分析开采条件下区域地下水动力场与水化学场的演变规律。结果表明:采煤疏干排水显著改变原始地下水流场,抽水井周边形成明显地下水降落漏斗,矿区西南部形成新的地下水分水岭;地下水中主要阴阳离子向抽水井方向汇聚,且前5年离子浓度变化幅度显著大于后5年;受溶滤作用与阳离子交替吸附作用共同影响,长兴组含水层水化学类型由由HCO3-Ca型向HCO3-Na·Ca型过渡,HCO-3浓度持续升高,易腐蚀井下金属设施。上述演化过程对煤矿长期安全生产构成潜在威胁, 需加强水质监测与防腐防护。

Abstract:

Coal mining will lead to acidification or salinization of groundwater, affecting the safety of coal mine production. In order to explore the chemical evolution of groundwater under the influence of exploitation, taking Qinglong Coal Mine in Guizhou Province as an example, combined with hydrochemical analysis and numerical simulation technology, a numerical model of groundwater was established to explore the evolution law of regional groundwater dynamic field and hydrochemical field under mining conditions. The results show that under the influence of water pumping during the mining process, the groundwater flow field changes, forming a falling funnel and forming a new watershed in the southwest. The main anions and anions were concentrated at the pumping well, and the concentration change in the first 5 years was more obvious than that in the last 5 years, and the hydrochemical type of Changxing Formation changed from HCO3-Ca type to HCO3-Na、Ca type due to the influence of leaching and cation adsorption, and the concentration of HCO3- increased, which may have a corrosive effect on underground equipment

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