Citation: | YANG Qin-hong, ZUO Wen-zhe, ZHU Bin. ANALYSIS ON THE HYDROGEOLOGICAL CHARACTERISTICS OF LUANHE ALLUVIAL PLAIN IN LUANXIAN-LUANNAN SECTION, HEBEI PROVINCE[J]. Geology and Resources, 2020, 29(4): 374-379, 362. doi: 10.13686/j.cnki.dzyzy.2020.04.011 |
The total reserves of the iron deposit group in Luanhe alluvial plain of Luanxian-Luannan section, including Sijiaying iron orefield, Macheng iron orefield, Kanshang iron orefield, Changyu iron mine and Gaoguanying iron mine, amount to billions of tons. All of them are covered with huge thick Quaternary water-bearing bodies. Mining is impossible due to complex hydrogeological conditions. Being watery unminable metal ore fields, they have been regarded as the water-abundant mining areas that the regional hydrogeological environment might be greatly affected in the exploitation, and labeled as restricted mining areas. It is not until the beginning of the 21st Century that these mines are put into production successively. By analyzing the hydrogeological conditions of the iron deposit group, the paper discusses the hydrogeological characteristics of Luanhe alluvial plain in Luanxian-Luannan section.
[1] | 李刚, 高谦, 王君, 等.司家营铁矿南区矿床水文地质条件分析[J].现代矿业, 2013, 29(9):45-47. |
[2] | 于孝民, 王明格, 李占芳.司家营铁矿北区矿坑涌水量预测[J].勘察科学技术, 2011(5):37-40, 61. |
[3] | 冯创业, 韩文玲.基于矿区水文地质模型及试验参数基础上的坎上铁矿矿坑涌水量预测[J].工程勘察, 2010(S1):771-778. |
[4] | 李亮经, 马广海, 田佳辉, 等.坎上铁矿水文地质特征及涌水量预测[J].水文地质工程地质, 2009, 36(6):37-41. |
[5] | 胥燕辉.马城铁矿地质特征及成因探讨[J].矿床地质, 2010, 29(S1):115-116. |
[6] | 刘建峰, 张妨, 邬立, 等. Visual Modflow模型在马城铁矿床地下水数值模拟中的应用[J].矿业工程, 2016, 14(2):49-52. |
[7] | 刘大金, 靳宝.河北某铁矿矿床水文地质条件分析及矿坑涌水量预测[J].地下水, 2014, 36(2):164-166. |
[8] | 左文喆, 王斌海, 程紫华, 等.基于地下水动态监测的司家营铁矿南区防治水措施[J].中国矿业, 2016, 25(4):91-97. |
[9] | 宋爱东, 郭献章, 刘大金.司家营铁矿南区防治水措施初探[J].河北冶金, 2013(1):1-4, 29. |
[10] | 戴岩柯, 崔世新, 张坤.水均衡法和数值法在矿坑深部涌水量预测中的比较[J].地下水, 2010, 32(1):24-48. |
[11] | 刘佩贵, 陶月赞.均衡法评价地下水可开采量的风险率[J].吉林大学学报(地球科学版), 2012, 42(4):1125-1129. |
[12] | 张二勇, 李长青, 李旭峰.区域地下水流数值模拟的方法和实践——以华北平原为例[J].中国地质, 2009, 36(4):920-926. |
[13] | 马秀媛, 李逸凡, 张立, 等.数值方法在矿井涌水量预测中的应用[J].山东大学学报(工学版), 2011, 41(5):86-91. |
[14] | 周乐, 刘元晴, 李伟, 等.山东大汶河流域中上游古近系含水岩组水文地质特征[J].中国地质, 2019, 46(2):316-327. |
[15] | 何泽, 宁卓, 黄冠星, 等.太行山前平原浅层地下水污染的分子生物学响应特征——以滹沱河流域为例[J].中国地质, 2019, 46(2):290-301. |
[16] | 肖琼, 张志诚, 谢磊, 等.昌源河国家湿地公园含水层水文地质特征研究[J].中国地质, 2017, 44(5):1006-1016. |
[17] | 马耀, 高谦, 李刚, 等.司家营铁矿南区矿床水文地质条件建模探究[J].中国矿山工程, 2014, 43(3):35-37. |
[18] | 宋爱东, 郭献章, 刘大金.司家营铁矿南区防治水措施初探[J].河北冶金, 2013(1):1-4, 29. |
[19] | 李刚, 杨志强, 高谦, 等.司家营铁矿南区矿床工程地质与采矿技术条件研究[J].金属矿山, 2013(8):11-15. |
[20] | 王晓光, 郭常来, 何海洋, 等.地下水降落漏斗分类研究[J].地质与资源, 2019, 28(5):487-492. |
Traffic location map of the study area
Distribution of iron deposit group in Luanhe alluvial plain of Luanxian-Luannan section
Hydrogeological profile of Luanhe alluvial plain in Luanxian-Luannan section