煤炭工程 ›› 2025, Vol. 57 ›› Issue (8): 8-15.doi: 10. 11799/ ce202508002

• 设计技术 • 上一篇    下一篇

寸草塔煤矿二水平延深及生产系统优化设计

醋永斌   

  1. 国能鄂尔多斯市工程设计有限公司,内蒙古 伊金霍洛旗 017209
  • 收稿日期:2025-05-30 修回日期:2025-08-28 出版日期:2025-08-11 发布日期:2025-09-11
  • 通讯作者: 醋永斌 E-mail:30247391@qq.com

Design of second level extension and production system optimization for Cuncaota Coal Mine

  • Received:2025-05-30 Revised:2025-08-28 Online:2025-08-11 Published:2025-09-11

摘要:

为解决寸草塔煤矿二水平3-1煤层开采水平延深开拓设计等问题,基于矿井地质条件、既有开拓布局及生产系统有效衔接等约束条件,开展了二水平延深开拓及生产系统优化设计研究。首先,从矿井工业场地布置、开拓方式、运输系统、通风系统和排水系统等方面,分析了矿井开拓布局及生产系统现状;其次,从水平延深开拓方式、水平划分与标高、水平大巷布置、盘区划分、首采工作面布置等方面分析确定了二水平延深设计;最后,从主(辅)运输系统、通风系统、排水系统等方面优化设计了二水平生产系统,实现了二水平生产系统与矿井既有生产系统的有效衔接。结果表明:寸草塔煤矿二水平延深设计通过合理的延深开拓布局以及科学的生产系统优化,有效提升了既有生产系统及设施的利用率,避免了水平延深施工对矿井生产的影响,可为近水平煤层群矿井水平延深设计提供科学参考。

关键词: 煤层群 , 水平延深 , 开拓布局 , 运输系统 , 通风系统 , 排水系统

Abstract:

To address the development design of level extension for mining the No. 3-1 coal seam at Level II in Cuncaita Coal Mine, Based on constraints including geological conditions, existing development layout, and production system connectivity, research was carried out on the design of the second-level extension and production system optimization. First, the current state of the mine development layout and production system was analyzed from the aspects of industrial site arrangement, development method, transportation system, ventilation system, and drainage system. Second, the design of the second-level extension was determined by analyzing the extension development method, level division and elevation, main roadway layout, panel division, and layout of the first working face. Finally, the production system for the second level was optimized in terms of main(auxiliary) transportation system, ventilation system, and drainage system, achieving effective integration with the mine’ s existing production system. The results show that through reasonable extension development layout and scientific production system optimization, the second-level extension design of Cuncaita Coal Mine effectively improves the utilization rate of existing production systems and facilities, avoids impacts on mine production during extension construction, and can provide a scientific reference for level extension design in mines with subhorizontal coal seam groups.


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