首页> 外文期刊>Natural Hazards >Discussion on controlling factors of hydrogeochemistry and hydraulic connections of groundwater in different mining districts
【24h】

Discussion on controlling factors of hydrogeochemistry and hydraulic connections of groundwater in different mining districts

机译:不同矿区地下水水力地球化学和水力连接控制因素的探讨

获取原文
获取原文并翻译 | 示例
       

摘要

To explore the controlling factors of the hydrochemistry and hydraulic connections of groundwater in three mining districts, 45 water samples from three mining districts (Nos. 31, 32 and 42) in the Peigou Coal Mine are analyzed. The hydrogeochemical compositions of the three mining districts are analyzed, and the water-rock interaction and controlling factors of the hydrogeochemistry of the groundwater are discussed by examining the ionic composition (ion ratio) and using a factor analysis. Then, the hydraulic connection is determined by conducting cluster and discriminant analyses. Finally, a model that identifies the source of the water inrush of the three mining districts is provided. The results show the controlling factors of the hydrogeochemistry in the three mining districts. And it is speculated that the hydraulic connection between the Nos. 31 and 42 mining districts is higher than that between the Nos. 31 and 32 mining districts. It is hypothesized that there may be an obscured tunnel between the Nos. 31 and 42 mining districts, which is connected through the Fushanzhai fault. Based on the water source identification model of mining districts, the groundwater recharge relationship of three mining districts is inverted by analyzing the causes of misjudgment and comparing with groundwater pulse in different years. The proposed method provides a new idea for correctly recognizing the groundwater circulation conditions under the influence of mining.
机译:分析了三个矿区地下水水力化和水力连接的控制因素,分析了矿区三个矿区(第31,32和42号)的45个水样。分析了三个矿区的水力地理组合物,通过检查离子组合物(离子比率)并使用因子分析来讨论地下水的水岩相互作用和控制因素。然后,通过导电和判别分析来确定液压连接。最后,提供了一种识别三个矿区涌入的水涌来源的模型。结果显示了三个矿区水文的控制因素。据推测,第31和第42个矿区之间的液压连接高于第31号和32个矿区之间的液压连接。假设No.31和42个采矿区之间可能有一个模糊的隧道,通过佛山寨断层连接。基于采矿区的水源识别模型,通过分析误判原因并与不同年份地下水脉冲相比,倒置了三个采矿区的地下水充电关系。该方法提供了在采矿影响下正确识别地下水循环条件的新思路。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号