煤炭工程 ›› 2024, Vol. 56 ›› Issue (5): 129-137.doi: 10.11799/ce202405020

• 研究探讨 • 上一篇    下一篇

特厚煤层限厚与充填协同分层开采覆岩导水裂隙发育规律研究#br#

陈海富,范立民,李小龙,万晓波,李鹏杰   

  1. 1. 中国矿业大学 矿业工程学院,江苏 徐州 221116

    2. 陕西榆林能源集团有限公司,陕西 榆林 719000

  • 收稿日期:2023-10-23 修回日期:2024-01-22 出版日期:2023-05-20 发布日期:2025-01-03
  • 通讯作者: 陈海富 E-mail:2101087527@qq.com

Development Law of water conducted fissure in overburden rock during the collaborative slicing of thickness-limiting and filling in extra-thick coal seams#br#

  • Received:2023-10-23 Revised:2024-01-22 Online:2023-05-20 Published:2025-01-03

摘要:

由于技术装备问题导致前期一些矿井的特厚煤层开采仅限厚开采造成了大量优质煤炭资源的浪费, 本研究基于榆树湾煤矿20111限厚开采工作面,综合运用现场实测,UDEC数值模拟、实验室试验、理论分析研究了特厚煤层工作面限厚与充填协同分层开采覆岩导水裂隙发育规律。数值模拟表明,当下分层充填开采充实率达到70%及以上时,导水裂隙带发育高度为177.4m,下分层开采对第四系萨拉乌苏组含水层无影响;下分层70%充实率充填开采物理模型相互验试验表明,下分层70%充实率充填开采时,覆岩裂隙发育明显减缓,导水裂隙带发育高度明显降低,仅为179.7m,导水裂隙带未发育至最小隔水保护层,可实现第四系萨拉乌苏组含水层下的特厚煤层安全、高效开采。

关键词: 特厚煤层, 保水开采, 导水裂隙带, 数值模拟, 充填开采

Abstract:

In the early stage of coal development, due to technical equipment issues, some mines only limited their thick coal seam mining to a portion, resulting in a waste of a large amount of high-quality coal resources. Based on the 2011 thick coal seam mining face of Yushuwan Coal Mine, this article comprehensively uses on-site measurement, UDEC numerical simulation, laboratory experiments, and theoretical analysis to study the development law of overlying rock water conducting fractures in the thick coal seam mining face of collaborative layered mining with thickness limit and filling. Numerical simulation shows that when the filling rate of the current layer filling mining reaches 70% or above, the development height of the water conducting fracture zone is 177.4 meters, and the lower layer mining has no impact on the Quaternary Salawusu Formation aquifer; The physical model cross validation test of the lower layer 70% filling mining shows that when the lower layer 70% filling mining is carried out, the development of overlying rock fractures is significantly slowed down, and the height of the development of the water conducting fracture zone is significantly reduced, only 179.7 meters. The water conducting fracture zone has not developed to the minimum waterproof protective layer, which can achieve safe and efficient mining of the ultra-thick coal seam under the Quaternary Salawusu Formation aquifer.

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