厚硬顶板下综放面煤壁稳定性与顶煤破坏规律研究

    Stability of coal wall in fully mechanized caving face under thick and hard roof

    • 摘要: 针对陕北矿区某厚硬顶板下特厚煤层综放开采面临的煤壁片帮现象严重的问题,构建厚硬顶板悬臂梁力学模型与煤壁杆结构力学模型,阐明煤壁临界承载载荷与煤壁高度的关系,研究厚硬顶板条件下覆岩位移场与工作面应力场协同演化规律,揭示了不同采放比下顶煤冒放性与煤壁稳定性对应关系。研究结果表明:①煤壁临界承载载荷与煤壁高度呈反比关系,煤壁高度越大,临界承载载荷越低,煤壁稳定性越差;②厚硬顶板条件下初次来压剧烈,工作面超前区域应力集中程度激增,较大的采放比不利于煤壁稳定性维护;③采放比越小,煤壁稳定性越好,厚硬顶板弱应力驱动顶煤破碎作用越弱,冒放性越差;④顶煤冒放性与煤壁稳定性整体呈反比关系,选取采放比为1∶0.8,可保障顶煤冒放性不变,同时大幅提升煤壁稳定性。

       

      Abstract: Aiming at the serious problem of rib spalling in fully-mechanized caving mining of extra-thick coal seam under a thick and hard roof in northern Shaanxi mining area, the mechanical model of cantilever beam with thick and hard roof and the mechanical model of coal wall rod structure are constructed to clarify the relationship between the critical bearing load of coal wall and the height of coal wall. The co-evolution law of overburden displacement field and working face stress field under the condition of thick and hard roof is studied, and the corresponding relationship between top coal caving and coal wall stability under different mining and caving ratios is revealed. The results show that: ① The critical bearing load of coal wall is inversely proportional to the height of coal wall. The higher the height of coal wall, the lower the critical bearing load and the worse the stability of coal wall.② Under the condition of thick and hard roof, the initial pressure is severe, and the stress concentration in the advance area of the working face increases sharply. The larger mining and caving ratio is not conducive to the maintenance of coal wall stability.③The smaller the mining and caving ratio, the better the stability of the coal wall, the weaker the crushing effect of the top coal driven by the weak stress of the thick and hard roof, and the worse the caving property.④The top coal cavability is inversely proportional to the stability of the coal wall as a whole. Selecting the mining ratio of 1∶0.8 can ensure that the top coal cavability remains unchanged and greatly improve the stability of the coal wall.

       

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