侯得峰, 许胜军, 戚灵灵. 厚冲积层下开采地表动态移动规律及预计研究[J]. 矿业科学学报, 2021, 6(1): 60-70. DOI: 10.19606/j.cnki.jmst.2021.01.007
引用本文: 侯得峰, 许胜军, 戚灵灵. 厚冲积层下开采地表动态移动规律及预计研究[J]. 矿业科学学报, 2021, 6(1): 60-70. DOI: 10.19606/j.cnki.jmst.2021.01.007
Hou Defeng, Xu Shengjun, Qi Lingling. Study on the law of dynamic surface movement and prediction of mining under thick alluvium[J]. Journal of Mining Science and Technology, 2021, 6(1): 60-70. DOI: 10.19606/j.cnki.jmst.2021.01.007
Citation: Hou Defeng, Xu Shengjun, Qi Lingling. Study on the law of dynamic surface movement and prediction of mining under thick alluvium[J]. Journal of Mining Science and Technology, 2021, 6(1): 60-70. DOI: 10.19606/j.cnki.jmst.2021.01.007

厚冲积层下开采地表动态移动规律及预计研究

Study on the law of dynamic surface movement and prediction of mining under thick alluvium

  • 摘要: 为了研究厚松散层下开采地表动态沉降规律,以实测资料为基础,分析了地表动态移动参数随工作面回采的演化规律。结果表明:地表超前移动影响距和地表最大下沉速度及其滞后距随工作面开采距离的增加而增大;当工作面推进至350 m时,三个参数值增幅减小,并最终分别稳定于225 m、34.5 mm/d及124 m;此后,地表下沉速度曲线以固定形状与工作面保持一定距离向前移动。基于对国内部分厚松散层矿井开采案例多元统计分析,得到地表最大下沉速度及其滞后角正切值与地质采矿参数之间的经验关系式;结合地表动态移动参数演化规律,构建了工作面推进至任意时刻,地表走向主断面不同点处的下沉速度预计公式;通过与实测值进行对比,验证了其预计精度能够满足工程实践的需要。

     

    Abstract: In order to study the dynamic subsidence law of ground under thick alluvium, based on the measured data, the evolution law of the surface dynamic movement parameters with the working face advancing was analyzed. The results show that the influence distance of the advance movement of surface, the maximum subsidence velocity of surface and its lag distance increase with the increase of mining distance of the working face. When the working face advances to about 350 m, the increase of the three parameter values decreases and finally stabilizes at 225 m, 34.5 mm/d and 124 m, respectively, thereafter, the curve of surface subsidence velocity moves forward with fixed shape and lag distance from the working face; based on multiple statistical analysis of mining cases in some domestic thick loose layer mining areas, the empirical relations between the maximum surface subsidence velocity and the tangent of its lag angle with geological mining parameters were constructed; finally, combined with the evolution law of the surface dynamic movement parameters, the prediction formula of the subsidence velocity of different points on the main cross section of the ground strike with the working face advancing to any time was constructed. The comparison with the measured value shows that the predicted accuracy can meet the needs of engineering practice.

     

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