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麦垛山矿矿井水害分析与防治
引用本文:李想,王军,王申,郑磊,潘然然,刘志军,康亚明.麦垛山矿矿井水害分析与防治[J].铜业工程,2012(3):81-84.
作者姓名:李想  王军  王申  郑磊  潘然然  刘志军  康亚明
作者单位:1. 北方民族大学化学与化学工程学院,宁夏银川,750021
2. 神华宁夏煤业集团有限责任公司,宁夏银川,750011
基金项目:宁夏自然科学基金资助项目,北方民族大学自主科研项目,北方民族大学国家自然科学基金前期培育项目,北方民族大学大学生创新性实验项目
摘    要:根据相邻矿井的统计发现麦垛山矿较为稳定的隔水层有:直罗组底部砂岩含水层顶板的粉砂岩、泥岩为主的隔水层、各主要煤层及其顶底板泥岩、粉砂岩组成的隔水层。在此基础上,对麦垛山矿矿井水文地质条件进行了综合分析,确定矿井开采2-2号煤期间水文地质类型为复杂型,而由于麦垛山矿处于建井后期和生产初期,矿井永久防排水系统尚未完全建成,矿井抵御水害能力尚显薄弱,加之矿井水文地质勘探深度和广度不足,为此,针对性地提出了今后防治水害的一些具体措施。

关 键 词:矿井水害  地表水  水文地质类型  含水层  矿井水调控技术

Research on Maiduoshan Coal -mine Impermeable Layer Characteristics and Groundwater Recharge and Discharge Conditions
LI Xiang , WANG Jun , WANG Shen , ZHENG Lei , PAN Ran-ran , LIU Zhi-jun , KANG Ya-ming.Research on Maiduoshan Coal -mine Impermeable Layer Characteristics and Groundwater Recharge and Discharge Conditions[J].Copper Engineering,2012(3):81-84.
Authors:LI Xiang  WANG Jun  WANG Shen  ZHENG Lei  PAN Ran-ran  LIU Zhi-jun  KANG Ya-ming
Affiliation:LI Xiang1, WANG Jun2, WANG Shent, ZHENG Lei', PAN Ran - ranI, LIU Zhi - jun1 , KANG Ya - ming1 ( 1. School of Chemistry and Chemical Engineering, The North University for Ethnics, Yinchuan, Ningxia 750021, China; 2. Shenhua Ningxia Coal Industry Group Co Ltd, Yinchuan , Ningxia 750011, China)
Abstract:According to statistics of the adjacent Maiduoshan Coal -mine is more stable impermeable layer: the bottom of the Zhi- luo sandstone aquifer roof sihstonc, mudstone aquicludc, the main coal seam and its roof and floor mudstone, siltstonecomposed of aquifuge. On this basis, Maiduoshan Coal - mine of hydrogeological conditions, a comprehensive analysis to determine underground mining of the No. 2 - 2 coal during the hydrogeological type complex, Maiduoshan Coal - mine in the late well construction and pro- duction of the early mine permanent drainage system has not been fully completed, the mine to resist water damage is still significantly weak, coupled with the lack of depth and breadth of mine hydrogeological exploration end, the author puts forward some specific meas- ures for controi of water disasters in the future.
Keywords:mine water disaster  earth~ surface water  water- bearing stratum  aquifer  adjusting and controlling technology for mine water
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