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Study on Overburden Stability and Development Height of Water Flowing Fractured Zone in Roadway Mining with Cemented Backfill

机译:巩固回水巷道采矿中水流动裂缝区覆盖稳定性与开发高度的研究

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摘要

In order to explore the stability of overburden rock and the development height of water flowing fractured zone in roadway filling mining, based on the movement and deformation mechanism of overburden rock, the mechanical analysis of overburden stability and failure was carried out, and the mechanical model of main roof rock beam was established, and the ultimate span and limit deflection of rock beam fracture were deduced. Combined with the mechanical model of the main roof fractured rock, the basis for the judgment of overburden failure developing to fractured zone is given in this paper. Taking a coal mine roadway backfill under water-bearing stratum as an example, based on the equivalent mining height, the theoretical calculation and analysis are carried out on the stability of overburden rock and the height of water flowing fractured zone. The reliability of the theoretical analysis is verified compared with the empirical formula and the numerical simulation results. The results showed that the water flowing fractured zone developed to the bottom of no. 7 glutenite, with a height of 32.5 m, slightly less than the calculation result of the empirical formula. The thickness of the waterproof coal pillar was 39.8 m, which was much less than the distance from the aquifer to the coal seam and can be mined safely.
机译:为了探讨覆盖岩石岩石岩石岩石灌木区的稳定性,基于覆盖岩的运动和变形机制,进行了覆盖稳定性和失效的机械分析,以及机械模型建立了主屋顶岩梁,推导出岩梁骨折的最终跨度和极限偏转。结合主屋顶裂缝岩石的机械模型,本文给出了发育骨折逆向区逆向失效的判断的基础。以煤矿地层采用煤矿道路回填,作为一个例子,基于等效的采矿高度,理论计算和分析是对覆盖层岩石的稳定性和水流裂缝区的高度进行了理论计算和分析。与经验公式和数值模拟结果相比,验证了理论分析的可靠性。结果表明,流动裂缝区的裂缝区域为底部。 7个谷蛋白,高度为32.5米,略低于经验配方的计算结果。防水煤柱的厚度为39.8米,远远小于含水层到煤层的距离,可以安全地开采。

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