煤炭工程 ›› 2025, Vol. 57 ›› Issue (8): 112-121.doi: 10. 11799/ ce202508016

• 研究探讨 • 上一篇    下一篇

考虑龄期强度的充填体-顶板协同承载稳定性分析

赵兵朝,王瑞锋,王京滨,陈浩楠,杨忠浩,拓永生   

  1. 1. 西安科技大学 能源学院,陕西 西安 710054

    2. 教育部西部矿井开采及灾害重点实验室,陕西 西安 710054

  • 收稿日期:2024-10-17 修回日期:2024-12-11 出版日期:2025-08-11 发布日期:2025-09-11
  • 通讯作者: 王瑞锋 E-mail:13679229077@163.com

Stability analysis of backfill body-roof synergistic bearing considering the age intensity

  • Received:2024-10-17 Revised:2024-12-11 Online:2025-08-11 Published:2025-09-11

摘要:

为提高煤炭资源回采率、处置大量煤基固废,以面间煤柱掘充一体化为背景,考虑龄期对充填体强度及承载能力的影响,通过室内试验研究不同水泥含量下充填体强度随龄期变化的演化规律,发现水泥含量与充填体强度呈正相关关系,充填体强度随龄期呈指数函数增长趋势;基于弹性地基梁理论,建立“掘-充”过程中充填体-顶板协同承载力学模型,给出“掘-充”过程中各个区域的顶板挠度方程;利用FLAC3D数值模拟探究“掘-充”过程中充填体水泥含量、掘充间距、掘充速度对充填体应力及顶板下沉量的影响,分析“掘-充”过程中不同掘进距离下充填体-顶板协同承载结构稳定性。结果表明:在面间煤柱“掘-充”过程中,水泥含量越高、掘充间距越小则充填体强度形成时间越快、顶板下沉量越少;掘充速度越快则充填区内充填体龄期越短、强度越低、承载效果越差、顶板塑性区破坏越严重;随着掘进距离的推进,充填体承载能力逐渐增强,顶板下沉速度逐渐减小,充填体-顶板协同承载结构逐渐趋于稳定。

关键词:

区段煤柱 , 掘充一体化 , 不同龄期强度 , 掘充速度 , 顶板稳定性

Abstract:

In order to improve the recovery rate of coal resources and dispose of a large amount of coal-based solid waste, based on the integration of excavation and filling of inter-surface coal pillars, considering the influence of curing age on the strength and bearing capacity of the filling body, the evolution law of the strength of the filling body with age under different cement contents was studied through laboratory tests. It was found that the cement content was positively correlated with the strength of the filling body, and the strength of the filling body increased exponentially with the age. According to the difference of the strength of the filling body, the bearing state of the filling body to the roof was divided into three stages : short-term bearing, medium-term bearing and long-term bearing. By establishing the collaborative bearing model of backfill-roof with different strength at different ages, the roof deflection equations of each region in the process of ' excavation-filling ' are given. A numerical simulation model of backfill-roof collaborative bearing was established by FLAC3 D. The effects of cement content, excavation-filling distance and excavation-filling speed on the stress of backfill and roof subsidence were analyzed, and the evolution law of backfill-roof collaborative bearing under different excavation distances in the process of ' excavation-filling ' was explored.The results show that in the process of ' excavation-filling ' of inter-surface coal pillars, the higher the cement content and the smaller the excavation-filling spacing, the faster the strength formation time of the filling body, the greater the vertical stress of the filling body and the less the roof subsidence. The faster the excavation and filling speed is, the shorter the curing age of the filling body in the filling area is, the lower the strength is, the worse the bearing effect is, and the plastic zone of the filling body and the roadway roof is seriously damaged. With the increase of tunneling distance, the maximum subsidence velocity of roof decreases gradually, and the cooperative bearing structure of backfill-roof tends to be stable gradually.

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