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Pressure-Arching Characteristics in Roof Blocks during Shallow Coal Mining

机译:浅埋采煤顶板的压力拱压特征

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To reveal the performance of the stepped subsidence and the strong roof weighting during shallow coal mining, taking the fully mechanized mining face with large mining height in the Shendong mining area in China as the engineering background, theoretical analysis and numerical simulation were used to analyze the pressure-arching effect of the hanging roof blocks. Three typical pressure-arch models of the roof structure were proposed, such as the symmetrical pressure-arch of two key blocks, the step pressure-arch of multiple key blocks, and the rotative pressure-arch of multiple key blocks. Results indicate that the horizontal stress displays a nonlinear distribution at the abutments of the symmetrical pressure-arch, and there is a linear distribution of horizontal stress with a higher peak value at the midspan of the pressure-arch. The high horizontal stress at the arch abutment is necessary to form the rotative pressure-arch of multiple key blocks. The horizontal stress is relatively less at the arch abutment of the step pressure-arch structure. The main key block is easier to slide in this structure as the boundary horizontal stresses display the nonlinear distribution. The results are of instructive significance for roof weighting forecast and strata control during shallow horizontal mining for a thick coal seam.
机译:为了揭示浅层煤开采过程中的阶梯式沉陷和强顶重的性能,以神东矿区综采工作面为研究背景,以理论分析和数值模拟为研究背景。悬挂式屋顶砌块的压力拱效应。提出了三种典型的屋盖结构压力拱模型,即两个关键块的对称压力拱,多个关键块的阶梯压力拱和多个关键块的旋转压力拱。结果表明,水平应力在对称压力拱的桥墩处表现出非线性分布,水平应力线性分布,在压力拱的中跨处具有较高的峰值。拱形基台处的高水平应力对于形成多个关键块的旋转压力拱是必不可少的。在阶梯式压力拱结构的拱形支座处,水平应力相对较小。主键块在这种结构中更容易滑动,因为边界水平应力显示非线性分布。结果对厚煤层浅水平开采的顶板权重预测和地层控制具有指导意义。

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