煤炭工程 ›› 2021, Vol. 53 ›› Issue (7): 0-0.

• 设计技术 •    

沟壑地貌下综放开采覆岩破断特征研究

朱磊   

  1. 中煤能源研究院有限责任公司
  • 收稿日期:2020-09-23 修回日期:2020-12-03 出版日期:2021-07-20 发布日期:2021-10-21
  • 通讯作者: 朱磊 E-mail:zhulei0914@163.com

Study on the failure characteristics of overlying strata in fully mechanized caving mining under gully landforms

  • Received:2020-09-23 Revised:2020-12-03 Online:2021-07-20 Published:2021-10-21

摘要: 针对沟壑地貌下综放开采工作面矿压显现强烈、来压规律异常的现象,论文以某矿12309工作面经过沟壑地貌下的推进过程为工程背景,综合采用数值模拟和相似模拟的研究方法,分析了工作面推进过程中的覆岩运移和破断特征以及塑性区演化规律,揭示了沟壑地貌对综放开采矿压显现的影响机理。研究结果表明:主关键层的破断将引起基岩和黄土层之间的离层,使得裂隙贯通至地表形成裂缝,此时沟壑地貌的地表不均布载荷易于和采动应力相互影响,造成工作面覆岩和黄土层上坡段区域出现向采空区回转的趋势,导致综放工作面矿压显现异常剧烈;同时相似模拟结果量化了12309工作面基本顶初次破断步距为35 m,周期来压步距介于23~34 m。数值模拟分析了工作面覆岩塑性区演化规律,与相似模拟结果相互吻合。该研究结论可为相似条件下的工作面推进规划提供借鉴。

关键词: 沟壑地貌, 主关键层, 覆岩破断特征, 模拟

Abstract: Aiming at the phenomenon of strong underground pressure and abnormal pressure law in fully mechanized caving mining face under gully landforms, the paper takes the advancing process of a mine 12309 working face through gully landforms as the engineering background, and comprehensively uses numerical simulation and similar simulation research method, analyzed the overlying strata migration and fracture characteristics and the evolution of plastic zone during the advancement of the working face, and revealed the influence mechanism of gully landform on the behavior of fully mechanized caving mining. The research results show that the breaking of the main key stratum will cause the separation between the bedrock and the loess stratum, causing the crack to penetrate to the surface and form a crack. At this time, the uneven surface load of the gully landform is likely to interact with the mining stress, causing the upslope section of the overburden and loess stratum has a tendency to turn to the goaf, resulting in abnormally violent underground pressure in the fully mechanized caving face; Simultaneously, similar simulation results quantify that the first weighting interval of the basic roof of 12309 working face is 35 m, and the periodic weighting step distance is between 23 and 34 m. Numerical simulation analyzes the evolution of the plastic zone of the overlying strata in the working face, which is consistent with similar simulation results. This research conclusion can provide a reference for advancement planning of working face under similar conditions.

Key words: gully landform, main key strata, overburden failure characteristics, simulation

中图分类号: