煤炭工程 ›› 2026, Vol. 58 ›› Issue (2): 50-60.doi: 10.11799/ce202602007

• 施工技术 • 上一篇    下一篇

膏体充填工作面沿空留巷围岩控制技术研究

宫 平,佘小广,徐常涛,牛珍朋   

  1. 1. 国电建投内蒙古能源有限公司,内蒙古 鄂尔多斯 017200

    2. 中煤科工集团南京设计研究院有限公司,江苏 南京 210031

    3. 中国矿业大学 矿业工程学院,江苏 徐州 221116

  • 收稿日期:2025-04-12 修回日期:2025-07-31 出版日期:2026-02-15 发布日期:2026-03-16
  • 通讯作者: 徐常涛 E-mail:15343733850@163.com

Surrounding rock control technology for gob-side entry retaining in paste backfilling working face

  • Received:2025-04-12 Revised:2025-07-31 Online:2026-02-15 Published:2026-03-16

摘要:

为研究针膏体充填工作面沿空留巷围岩稳定性与控制技术,以鄂尔多斯矿区某矿CT301充填工作面为工程背景,通过理论分析、数值模拟和现场工业性实验等手段对沿空巷道围岩进行分析与研究。根据等价采高理论分析了膏体充填沿空留巷的覆岩运移特征,基于Winkler 弹性地基梁假设建立顶板力学模型,明确充实率是影响顶板挠度的关键可控因素,提高充实率可有效增强充填体对覆岩的支撑作用。通过FLAC3D数值模拟研究了膏体充填工作面沿空留巷围岩变形及矿压显现规律。提出“锚网索基本支护+门式支架局部协同加强支护”的综合控制技术体系,现场应用结果表明,该技术有效控制了巷道围岩变形,顶底板和两帮最大变形量分别稳定在190140mm左右,留巷围岩控制效果显著。

关键词: 膏体充填, 沿空留巷, 覆岩运移, 充实率, 矿山压力, 围岩控制

Abstract:

To study the surrounding rock stability and control technology for gob-side retention entries with paste backfilling in working faces, this research takes the CT301 backfilling working face of a mine in the Ordos Mining Area as the engineering background, and conducts analysis and research through theoretical analysis, numerical simulation, and on-site industrial experiments. First, based on the equivalent mining height theory, the overlying rock movement characteristics of gob-side retention entries with paste backfilling are analyzed. A mechanical model of the roof is established under the assumption of the Winkler elastic foundation beam, clarifying that the filling ratio is a key controllable factor affecting roof deflection. Increasing the filling ratio can effectively enhance the supporting role of the backfill for the overlying rock. Second, the FLAC3D numerical simulation is used to study the deformation of surrounding rocks and the manifestation of mining pressure in gob-side retention entries with paste backfilling in working faces. The results show that a higher filling ratio leads to weaker mining pressure manifestation and better surrounding rock stability. As the working face advances and the solidification strength of the paste backfill increases, the supporting pressure in the stope gradually stabilizes. Finally, a comprehensive control technology system of "basic bolting-mesh-cable support + local collaborative strengthening support with portal hydraulic supports" is proposed. The on-site application results indicate that this technology effectively controls the deformation of surrounding rocks in the entry, with the maximum deformations of the roof-floor and two sides stabilizing at around 190mm and 140mm, respectively, demonstrating significant control effects on the surrounding rock of the retained entry.

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