复杂地形地貌对下伏煤岩层应力影响规律研究

The influence of complex topography on the stress of underlying coal strata

  • 摘要: 为了掌握地表的山体和山体间的沟谷区域等复杂地形地貌对下伏煤岩层应力的影响规律,本文通过理论分析构建了山体下煤岩层垂直应力计算模型,并以禾草沟煤矿50205工作面为背景,研究了复杂地形地貌对下伏煤岩层荷载作用特征及应力传递规律。结果表明:山体荷载对浅部煤层具有较明显的应力影响,在水平方向上影响明显范围与山体坡度呈负相关性,影响范围系数与山体坡度成正相关性,山体对下伏煤层垂直应力影响特征可分为初始影响、剧烈增长影响和缓慢增长影响3个阶段;沟谷区域下伏煤岩层垂直应力叠加数值呈现随深度变化先增大后减小的特征,且当两山体相邻间距大于山体底面宽度1.25倍时,应力叠加效应很小,可忽略不计;随着相邻山体间距逐渐增大,沟谷区域下伏煤岩层形成一个应力叠加不明显的倒三角区域。

     

    Abstract: To master the influence law of complex landform such as the surface mountain and the valley area between the mountains on the underlying coal rock stress, this study constructed a calculation model of the vertical stress of the coal strata under the mountain through theoretical analysis.Taking the 50205 working face of Hecaogou coal mine as example for analysis, This paper studied the complex landform on the underlying coal rock load characteristics and stress transfer law.Results show that: mountain load has significant stress effect on shallow coal seam.In the horizontal direction, the influence range is negatively correlated with the mountain slope, and the coefficient of influence range is positively related to the mountain slope.The effect of mountain on the vertical stress of the underlying coal seam can be divided into three stages: initial effect, intense growth effect and slow growth effect.The vertical stress superposition value of the underlying coal strata in the gully region firstly increases and then decreases with the change of depth.Moreover, when the distance between two adjacent mountains increases to more than.1.25 times of the width of the mountain bottom, the effect of stress superposition is very small and can be ignored.As the distance between adjacent mountains gradually increases, an inverted triangle area with insignificant stress superposition is formed in the coal strata under the gully area.

     

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