刘亚明, 刘永红, 高明仕. 深部无预掘通道停采空间顶板破裂特征[J]. 煤矿安全, 2016, 47(5): 197-199,204.
    引用本文: 刘亚明, 刘永红, 高明仕. 深部无预掘通道停采空间顶板破裂特征[J]. 煤矿安全, 2016, 47(5): 197-199,204.
    LIU Yaming, LIU Yonghong, GAO Mingshi. Roof Fracture Characteristics of Deep Mining-pause Space Without Pre-excavation Roadway[J]. Safety in Coal Mines, 2016, 47(5): 197-199,204.
    Citation: LIU Yaming, LIU Yonghong, GAO Mingshi. Roof Fracture Characteristics of Deep Mining-pause Space Without Pre-excavation Roadway[J]. Safety in Coal Mines, 2016, 47(5): 197-199,204.

    深部无预掘通道停采空间顶板破裂特征

    Roof Fracture Characteristics of Deep Mining-pause Space Without Pre-excavation Roadway

    • 摘要: 针对深部无预掘通道停采回撤空间冒顶及撤架事故,分析了停采空间直接顶与基本顶最危险的破裂形态。研究表明:扩帮与撤架对停采空间顶板产生持续扰动影响;强荷载下,直接顶呈现分区渐进破裂形态;中心区颈缩段贯穿后,直接顶极易形成块体滑冒结构;随支架不断回撤,基本顶易形成侧向回转结构而引发支架失稳;利用“小通道+掩护支架+间替抽撤”的撤架方式,可以限制顶板破裂。

       

      Abstract: In view of roof fall and supports retracement accidents existed in deep miming-pause space without pre-excavation roadway, the most dangerous roof failure mode was theoretically analyzed.The studies show that enlarging coal wall and withdrawing hydraulic supports would cause persistent disturbances to the mining-pause space.Under high ground pressure, the tensile zone and compression-shear zone of immediate roof gradually evolved.The immediate roof was easy to collapse when the two zones were interpenetrated by through crack.With continually retracing supports, the basic roof gradually forms lateral rotary structure, which will induce hydraulic supports instability by exert lateral force.Through shortening the width of mining-pause space,utilizing additional supports to protect the dangerous zone of roof,as well as alternately withdrawing the supports, the roof fall problems can be effectively controlled.

       

    /

    返回文章
    返回