煤炭工程 ›› 2026, Vol. 58 ›› Issue (7): 1-9.doi: 10.11799/ce202607001

• 设计技术 •    下一篇

深部L型采场直角转向期间回撤通道充填-留巷关键技术研究#br#

王 明,李春元,王育轩,谢生荣,孙 建,张 楠   

  1. 1. 冀中能源股份有限公司 邢东矿,河北 邢台 054102

    2. 中国矿业大学(北京)能源与矿业学院,北京 100083

    3. 河北省煤田地质勘查院,河北 邢台 054102

  • 收稿日期:2025-10-15 修回日期:2026-01-12 出版日期:2026-07-15 发布日期:2026-08-03
  • 通讯作者: 李春元 E-mail:lcy6055@163.com

Key technology of backfill-retained roadway during right-angle turn of a deep L-shaped stope#br#

  • Received:2025-10-15 Revised:2026-01-12 Online:2026-07-15 Published:2026-08-03

摘要:

为避免深部L型采场直角转向期间预掘回撤巷道并留设保护煤柱护巷,研究不规则采场回撤通道充填-留巷控制技术,对于大幅提升煤炭资源回收率并保障深部采场的安全高效回采具有重要意义,应用连续曲形梁理论,分析了回撤通道围岩充实率、埋深与顶板覆岩变形曲率的关系,给出了回撤通道围岩充填体强度的计算方法,提出了充填矸石与充填改性材料的配比调控方法,搭建了井上下充填矸石与充填改性浆液的长距离输送控制系统,研发了L型采场里段搬家倒面临时支护、充填、留巷帮支护相结合的一体化围岩控制技术。现场应用表明:充填矸石、改性浆液的配比调控实现了充填材料的长距离快速定量输送控制,留巷段围岩最大变形量仅99mm,深部L型采场转向期间回撤通道围岩充填体强度与稳定性大幅提升。

Abstract:

To avoid the pre-excavation of retreat roadway and the setting of protective coal pillars in deep L-shaped stopes, this study on the backfilling-roadway retention control technology for the retreat roadway is of great significance. It is crucial for significantly improving the recovery rate of coal resources and ensuring the safe and efficient mining of deep irregular working faces. In this paper, the theory of continuous curved beams was applied to analyze the relationship between the backfilling rate, the burial depth and the deformation curvature of the roof overburden for the surrounding rock of the retreat roadway. And the backfilling strength calculation method of the surrounding rock of the retreat roadway was given. The ratio control method for backfilling gangue and modified backfilling materials is proposed. A long-distance transportation control system for backfilling gangue and modified slurry, both above and below ground, was built on site. An integrated surrounding rock control technology was developed for the relocation of the inner section of the L-shaped stope, combining real-time support, backfilled and roadway-side support. Field applications show that the proportion control of backfill gangue and modified slurry has achieved long-distance, rapid, and quantitatively controlled transportation of filling materials. With the maximum deformation of the surrounding rock in the retained roadway section measuring only 99 mm. During the directional transition phase of the deep L-shaped stope, the strength of the backfill body and the stability of the surrounding rock of the retreat roadway has been significantly enhanced.

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