张国华,李子波,李豫波,等. 煤厚变化区围岩能量积聚规律及开采方向对其影响[J]. 煤矿安全,2024,55(9):1−10. doi: 10.13347/j.cnki.mkaq.20231625
    引用本文: 张国华,李子波,李豫波,等. 煤厚变化区围岩能量积聚规律及开采方向对其影响[J]. 煤矿安全,2024,55(9):1−10. doi: 10.13347/j.cnki.mkaq.20231625
    ZHANG Guohua, LI Zibo, LI Yubo, et al. Energy accumulation law of surrounding rock in coal thickness variation area and the influence of mining direction on it[J]. Safety in Coal Mines, 2024, 55(9): 1−10. doi: 10.13347/j.cnki.mkaq.20231625
    Citation: ZHANG Guohua, LI Zibo, LI Yubo, et al. Energy accumulation law of surrounding rock in coal thickness variation area and the influence of mining direction on it[J]. Safety in Coal Mines, 2024, 55(9): 1−10. doi: 10.13347/j.cnki.mkaq.20231625

    煤厚变化区围岩能量积聚规律及开采方向对其影响

    Energy accumulation law of surrounding rock in coal thickness variation area and the influence of mining direction on it

    • 摘要: 为揭示煤厚变化区围岩能量积聚规律以及开采方向对其影响,以鹤岗峻德煤矿17#煤层冲击倾向性煤层为研究背景,以组合岩层为对象,探讨煤厚变化区应力转移机制,揭示煤厚变化区原岩应力与煤岩厚度比、弹性模量比之间关系,阐明开采方向对煤厚变化区采动应力及能量积聚规律的影响。结果表明:由于岩石和煤的强度(刚度)差异,导致煤厚变化区域主应力分布不均匀,在煤厚变薄区域出现峰值应力,变厚区域出现谷值应力,且煤厚变化范围越大、煤岩弹性模量比越小,峰值应力越大,谷值应力越小。受采动应力影响,在煤厚变化区域超前支承压力与煤厚变化异常应力叠加,围岩应力集中程度高。由薄向厚回采,工作面前方超前支承压力区和应力异常区叠加,存在1个冲击危险区,由厚向薄回采存在2个冲击危险区,从而由薄向厚回采更为合理。针对煤厚变化区采动应力及能量积聚规律,提出调控采场围岩结构、围岩应力、增加冲击阻能的防控思路,并进行工程应用,效果良好。

       

      Abstract: To reveal the energy accumulation law of surrounding rock in coal thickness change area and the influence of mining direction on it, this study takes the 17# coal seam of Hegang Junde Coal Mine as the research background, and takes the combined rock strata as the object to discuss the stress transfer mechanism of coal thickness change area. The relationship between the original rock stress and the thickness ratio and elastic modulus ratio of coal rock in the coal thickness change area is revealed, and the influence of mining direction on the mining stress and energy accumulation law in the coal thickness change area is clarified. The following conclusions are obtained: due to the difference in strength (stiffness) between rock and coal, the principal stress distribution in the coal thickness change area is uneven. The peak stress appears in the coal thickness thinning area, and the valley stress appears in the thickening area. The larger the range of coal thickness change and the smaller the elastic modulus ratio of coal and rock, the greater the peak stress and the smaller the valley stress. Under the influence of mining stress, the advance abutment pressure and the abnormal stress of coal thickness change are superimposed in the area of coal thickness change, and the stress concentration of surrounding rock is high. From thin to thick mining, there is an impact danger zone due to the superposition of the advance abutment pressure zone and the stress anomaly zone in front of the working face, and there are two impact danger zones from thick to thin mining, so it is more reasonable to mine from thin to thick. In view of the mining stress and energy accumulation law in the coal thickness change area, the prevention and control ideas of regulating the surrounding rock structure, surrounding rock stress, and increasing impact resistance energy are put forward, the engineering application is carried out, and the application effect is good.

       

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