朱庆伟, 姬文斌, 孙学阳. 黄土覆岩浅埋深大采高矿区沉陷数值模拟[J]. 煤矿安全, 2016, 47(7): 230-233.
    引用本文: 朱庆伟, 姬文斌, 孙学阳. 黄土覆岩浅埋深大采高矿区沉陷数值模拟[J]. 煤矿安全, 2016, 47(7): 230-233.
    ZHU Qingwei, JI Wenbin, SUN Xueyang. Subsidence Numerical Simulation for Loess Overlying Rock Mining Area with Thin Buried Depth and Large Mining Height[J]. Safety in Coal Mines, 2016, 47(7): 230-233.
    Citation: ZHU Qingwei, JI Wenbin, SUN Xueyang. Subsidence Numerical Simulation for Loess Overlying Rock Mining Area with Thin Buried Depth and Large Mining Height[J]. Safety in Coal Mines, 2016, 47(7): 230-233.

    黄土覆岩浅埋深大采高矿区沉陷数值模拟

    Subsidence Numerical Simulation for Loess Overlying Rock Mining Area with Thin Buried Depth and Large Mining Height

    • 摘要: 为了研究黄土矿区浅埋深、大采高煤层在长壁开采条件下地表沉陷规律,以陕北榆林大柳塔煤矿某工作面为研究对象,在理论分析的基础上,运用UDEC4.0数值模拟软件进行地表沉陷规律研究,模拟结果与实测值相差较小并得出了下沉系数、主要影响角、地表沉陷盆地范围、地面倾斜及曲率等参数的大小,进而揭示大柳塔煤矿2-2煤层覆岩变形和地表沉陷规律。

       

      Abstract: In order to achieve the mechanism of surface subsidence of longwall mining mine with thin buried-depth and large mining height in loess area, taking a working face of Daliuta Coal Mine in Shaanxi Province Yulin City, according to theoretical analysis, we use UDEC4.0 numerical simulation software to study mechanism of surface subsidence. The results showed that the error comparing with measured results is small and parameters such as subsidence coefficient, main influencing angle of stratum, the range of subsidence basin, ground surface tilt and curvature are figured out, which revealed the general development laws of overburden deformation and surface subsidence in Daliuta 2-2 coal seam.

       

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