黄选明,张雁,王明星,等. 我国露天煤矿截水帷幕关键技术进展[J]. 煤田地质与勘探,2022,50(7):1−9. DOI: 10.12363/issn.1001-1986.21.12.0766
引用本文: 黄选明,张雁,王明星,等. 我国露天煤矿截水帷幕关键技术进展[J]. 煤田地质与勘探,2022,50(7):1−9. DOI: 10.12363/issn.1001-1986.21.12.0766
HUANG Xuanming,ZHANG Yan,WANG Mingxing,et al. Key technical progress of water cutoff curtain technology in open-pit coal mines in China[J]. Coal Geology & Exploration,2022,50(7):1−9. DOI: 10.12363/issn.1001-1986.21.12.0766
Citation: HUANG Xuanming,ZHANG Yan,WANG Mingxing,et al. Key technical progress of water cutoff curtain technology in open-pit coal mines in China[J]. Coal Geology & Exploration,2022,50(7):1−9. DOI: 10.12363/issn.1001-1986.21.12.0766

我国露天煤矿截水帷幕关键技术进展

Key technical progress of water cutoff curtain technology in open-pit coal mines in China

  • 摘要: 我国露天煤矿普遍采用抽排方式进行地下水控制以满足煤炭资源安全开采要求,这种方式对水资源造成极大破坏,严重影响煤矿周边的生态环境。近年来,随着我国社会经济的全面发展,国家对生态环境保护、生态文明建设提出了更高要求,如何优化、转变露天煤矿地下水控制方式,减少矿坑疏排水量是露天煤矿防治水工作普遍面临的崭新课题。采用截水帷幕技术取代疏排降水技术,由被动疏水变为主动截水,是解决露天煤矿因疏排水带来诸多问题的根本措施。以内蒙古扎尼河露天煤矿、元宝山露天煤矿截水帷幕实施过程为例,介绍我国露天煤矿截水帷幕设计理念、施工工艺和截水帷幕材料,在实践过程中,突破了防渗膜大深度垂向隐蔽铺设与连接技术瓶颈;研发了超长槽段连续开挖及浇筑工艺,大幅减少接头数量;研制粉煤灰−水泥混合浆体与HDPE防渗膜的复合帷幕材料,提高帷幕抗渗与抗变形性能;构建帷幕质量与截水效果综合检验体系,掌握了露天煤矿截水帷幕建造关键技术。截水帷幕技术在我国露天煤矿的成功应用,丰富了露天煤矿防治水与水资源保护技术理论,促进了行业技术进步,为露天煤矿地下水控制及安全绿色开采提供了新思路、新技术、新工艺,对其他非煤矿山及水利水电、交通等更高防渗等级要求的工程具有重要借鉴意义。

     

    Abstract: The method of pumping and discharging groundwater is widely used in open-pit coal mines for groundwater control in China to meet the requirements of safe coal mining, which causes great damage to water resources and seriously affects the ecological environment around coal mines. In recent years, with the all-round development of the economy, China has put forward higher requirements for ecological environment protection and ecological civilization construction. How to optimize and change the groundwater control mode and reduce the volume of pit drainage is a new subject generally in water prevention and control of open-pit coal mines. The use of the water cutoff curtain technology instead of drainage and dewatering technology is the fundamental measure to solve many problems caused by drainage in open-pit coal mines. Taking the implementation of the water cutoff curtain technology in Zhanihe open-pit coal mine and Yuanbaoshan open-pit coal mine as an example, this paper introduces the design concept, construction process and materials of the water cutoff curtain technology for open-pit coal mines in China. In the practice, the technical bottleneck of large-depth vertical concealed laying and complete connection of impervious membranes is broken through, and the continuous excavation and pouring technology of super long grooves is developed, greatly reducing the number of joints. The composite curtain material of fly ash-cement mixed slurry and HDPE geomembranes is developed to improve the impermeability and deformation resistance of the curtain. The comprehensive inspection system for curtain quality and water interception effect is constructed, and the key technologies of curtain construction are mastered. The successful application of water cutoff curtain technology in China enriches the technical theory of water control and water resource protection in open-pit coal mines, promotes the technical progress of the industry, and provides new ideas, new technologies and new processes for groundwater control and safe and green mining in open-pit coal mines. It has important reference significance for other non-coal mines, water conservancy, hydropower, transportation and other projects with higher anti-seepage grade requirements.

     

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