煤炭工程 ›› 2026, Vol. 58 ›› Issue (1): 93-100.doi: 10.11799/ce202601012

• 生产技术 • 上一篇    下一篇

沟谷区房柱式采空区下浅埋煤层开采矿压显现规律研究

邓雨培,胡佰玉,崔 博,姜大鹏,张坤铭,潘卫东   

  1. 1. 中国矿业大学(北京)煤层绿色智能开采教育部工程研究中心,北京 100083
    2. 美国宾夕法尼亚州立大学 能源与矿业工程系,美国 宾州 16802

  • 收稿日期:2025-07-02 修回日期:2025-09-10 出版日期:2026-01-12 发布日期:2026-03-04
  • 通讯作者: 邓雨培 E-mail:dfsy1994@outlook.com

Study on the manifestation law of mining pressure in shallow buried coal seams under the room-and-pillar mining airspace in gully area

  • Received:2025-07-02 Revised:2025-09-10 Online:2026-01-12 Published:2026-03-04

摘要:

神府矿区地表沟壑交错纵横、高差大, 在开采扰动和地表形态共同作用下,工作面过沟谷区域时矿压显现规律复杂,同时上部煤层采用房柱式开采,遗留煤柱对下煤层开采的顶板稳定性造成一定影响。针对此问题,以郭家湾煤矿51208工作面为工程背景,综合运用理论分析、数值模拟和现场监测等方法,研究沟谷地形下工作面过房柱式采空区的矿压显现规律。结果表明:沟谷区房柱式煤柱应力向坡顶延伸段增大,最大影响位置向坡中段偏移呈现“坡上增大、坡底减小,台阶分布、向心偏移”的特点;沟谷地形主导下层工作面矿压显现,实体煤下开采对比房柱式采空区下开采工作面顶板应力差值仅为1%;现场监测矿压显现规律与模拟应力特征相似,坡底区域周期来压步距约7.45m,上坡段周期来压步距为9.54~11.74 m,坡顶及稳定回采段平均周期来压步距为10.0m,整体矿压呈现“坡底短并小、坡中乱且大、坡顶稳而广”的分区特征和“初期单侧集中、中期异步波动、后期全域稳定”的规律。

关键词: 沟谷区, 房柱式采空区, 遗留煤柱, 煤柱稳定性, 应力分布, 矿压显现

Abstract:

In the Shenfu Mining Area, the surface is crisscrossed by gullies with large elevation differences. Under the combined action of mining disturbance and surface topography, the laws of mine pressure behavior are complex when the working face passes through gully areas. Additionally, the upper coal seam was mined using the room-and-pillar method, and the remaining coal pillars affect the roof stability during the mining of the lower coal seam. To address this issue, taking the 51208 working face of Guojiawan Coal Mine as the engineering background, this study comprehensively uses theoretical analysis, numerical simulation, and field monitoring to investigate the mine pressure behavior laws of the working face passing through room-and-pillar goaf under gully topography. The results show that: The stress of room-and-pillar coal pillars in gully areas increases toward the extension segment of the slope crest, with the maximum influence position shifting to the middle of the slope, exhibiting the characteristics of "increasing on the slope, decreasing at the slope bottom, stepped distribution, and centripetal offset". Gully topography dominates the mine pressure behavior of the lower working face, with the difference in roof stress between the working face mined under room-and-pillar goaf being only 1%.The field monitoring of mine pressure behavior is similar to the simulated stress characteristics. The periodic weighting interval in the slope bottom area is approximately 7.45 m, while that in the upper slope segment is 9.54–11.74 m. The average periodic weighting interval in the slope crest and stable mining segments is 10.0 m. Overall, the mine pressure shows zonal characteristics of "short and small at the slope bottom, chaotic and large in the middle slope, stable and widespread at the slope crest" and a behavior law of "unilateral concentration in the early stage, asynchronous fluctuation in the middle stage, and global stability in the later stage". This study reveals the mine pressure behavior laws of working faces passing through remaining coal pillars in gully areas, providing research ideas and guiding significance for the mine pressure behavior laws of working face mining under similar geological conditions.

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