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Distribution laws of in-situ stress in deep underground coal mines

机译:深层地下煤矿原位应力分配规律

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With depth and intensity of coal mining increasing, effects of in-situ stress on deformation and failure of the surrounding rock are increasingly growing. Through data independently measured and collected within 600-1500m, this paper summaries distribution laws of in-situ stress in deep underground coal mines of our country, main existing types of in-situ stress and its directional characteristics. Maximum horizontal stress, minimum horizontal stress, vertical stress and lateral pressure ratio variation laws with depth are obtained by using regression analysis. Generally, in-situ stresses increase with depth. With increasing depth the rate of increase in horizontal stresses decreases. A considerable scatter in the in-situ stress test data may be due to distinct differences in both the strength and deformation moduli of strata located in varying geological environments and different coal districts. Two types of stress field distribution have been noted with σ_(Hvh) (σ_(Hmax)>σ_c>σ_(hmin)) and σ_(Hvh) (σ_(Hmax)>σ_c>σ_(hmin)) found mainly in deep coal mines. The ratio of the maximum horizontal principal stresses to vertical stress is usually between 0.63 and 2.42 in the deep coal districts.
机译:随着深度和煤炭开采强度的不断增加,对变形和围岩破坏地应力的影响正日益增加。通过独立测量和收集内600-1500m数据,本文摘要地应力的分布规律在我国的地下深部煤矿,主要现有各类在地应力和它的指向性。最大水平应力,最小水平应力,垂直应力和随深度侧压比的变化规律,通过使用回归分析而获得。一般情况下,在原地应力随深度增加。随着深度的增加而在水平应力的速率下降。在原位应力测试数据A相当分散,可能是由于在位于不同地质环境和不同的煤区地层的强度和变形模量都明显的差异。两种类型的应力场分布的已注意到σ_(HVH)(σ_(HMAX)>σ_c>σ_(HMIN))和σ_(HVH)(σ_(HMAX)>σ_c>σ_(HMIN))主要发现于深煤地雷。最大水平主应力垂直应力的比例通常0.63和2.42之间是在深煤区。

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