柳昭星. 不同回采方式下地表沉陷特征UDEC数值分析[J]. 煤矿安全, 2020, 51(9): 228-234.
    引用本文: 柳昭星. 不同回采方式下地表沉陷特征UDEC数值分析[J]. 煤矿安全, 2020, 51(9): 228-234.
    LIU Zhaoxing. UDEC Numerical Analysis for Surface Subsidence Characteristics Under Different Mining Methods[J]. Safety in Coal Mines, 2020, 51(9): 228-234.
    Citation: LIU Zhaoxing. UDEC Numerical Analysis for Surface Subsidence Characteristics Under Different Mining Methods[J]. Safety in Coal Mines, 2020, 51(9): 228-234.

    不同回采方式下地表沉陷特征UDEC数值分析

    UDEC Numerical Analysis for Surface Subsidence Characteristics Under Different Mining Methods

    • 摘要: 利用UDEC分析了综采和分层开采工作面不同进尺下地表沉陷特征。研究结果表明:下分层开采工作面与综采工作面地表下沉变化趋势基本一致,极值处于采空区的中部偏后位置,但下分层工作面最大下沉值增大约30.9%,下沉系数降低约11.5%;综采工作面下沉速度极值随工作面进尺增加而增大,并向推采方向偏移,而下分层工作面下沉速度极值相对降低;下分层开采工作面比综采工作面的地表水平移动更为剧烈和波动,水平移动正、负极值分别增大约45.2%和63.6%;综采工作面采动影响范围大于分层开采工作面,分层开采工作面下分层开采超前影响角较综采工作面降低约4.38%,边界角降低约1.43%。

       

      Abstract: UDEC is used to analyze the surface subsidence characteristics under different steps of fully mechanized and layered mining face. The research results show that the trend of surface subsidence in the lower layer mining face and the fully mechanized mining face is basically the same, and the extreme value is in the middle back position of the goaf, but the maximum subsidence value of the lower layer face increases by about 30.9%. The sinking coefficient is reduced by about 11.5%; the extreme value of sinking speed of fully mechanized mining face increases with the increase of step of working face, and shifts to the direction of push mining, while the extreme value of sinking speed of lower layered working face relatively decreases; the horizontal movement of the stratum mining face is more violent and fluctuating than that of the fully mechanized mining face. The positive and negative values of the horizontal movement increase by approximately 45.2% and 63.6%, respectively. The influence range of the fully mechanized mining face is greater than that of the layered mining face. Compared with the fully mechanized mining face, the leading influence angle of layered mining under the layer mining face is reduced by about 4.38%, and the boundary angle is reduced by about 1.43%. The conclusion is to provide guidance for rational determination of the mining method.

       

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