沙旋, 孙文忠, 刘志恒, 袁永. 大断面煤巷硐室群围岩稳定性分析及控制技术[J]. 煤矿安全, 2018, 49(12): 225-228.
    引用本文: 沙旋, 孙文忠, 刘志恒, 袁永. 大断面煤巷硐室群围岩稳定性分析及控制技术[J]. 煤矿安全, 2018, 49(12): 225-228.
    SHA Xuan, SUN Wenzhong, LIU Zhiheng, YUAN Yong. Stability Analysis and Control Technology of Surrounding Rock on Large Section Coal Roadway Chamber Group[J]. Safety in Coal Mines, 2018, 49(12): 225-228.
    Citation: SHA Xuan, SUN Wenzhong, LIU Zhiheng, YUAN Yong. Stability Analysis and Control Technology of Surrounding Rock on Large Section Coal Roadway Chamber Group[J]. Safety in Coal Mines, 2018, 49(12): 225-228.

    大断面煤巷硐室群围岩稳定性分析及控制技术

    Stability Analysis and Control Technology of Surrounding Rock on Large Section Coal Roadway Chamber Group

    • 摘要: 为研究支巷高度与硐室间距对巷硐群围岩稳定性影响机制,以某矿北翼运输大巷硐室群为研究背景,分析了支巷开挖对围岩应力扰动规律,提出主巷、支巷高度一致时加强交叉点顶板支护,高度不一致时加强支巷顶板支护的差异化加固方案,并确定了最小硐室间距为6 m。现场实测表明,在锚网索+喷浆协同支护下,围岩深度超过2 m后基本无裂隙发育,支护效果理想。

       

      Abstract: In order to study the influence mechanism of roadway height and chamber distance on surrounding rock stability of roadway and chamber group, based on the study of the chamber group in the northern wing transportation roadway of a mine, the mechanism of surrounding rock stress disturbance was analyzed, differentiated support program of reinforcement of roof support at intersections when height of main lane and branch lane is same, and strengthening roof support of branch roadways when height is inconsistent was proposed. It is determined that the minimum chamber spacing is 6 m. Field measurements show that the surrounding rock has no fracture development when the depth of the surrounding rock exceeds 2 m, and the supporting effect is ideal.

       

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