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Evolution characteristics of mining-induced stress field of fully mechanized top-coal caving face based on in-situ stress

机译:基于原位应力的全机械化顶煤塌方采矿诱导应力场的演化特性

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Considering the significance of in-situ stress on the mining-induced stress around the fully mechanized top-coal caving (FMTC) mining face, which has already become the most common mining method for thick coal seams.The hollow inclusion strain gauge method was used to test the in-situ stress of zhuxianzhuang coal mine, and then the in-situ stress field has been back analyzed based on the multi-objective constraints optimization method, whose results illustrate that the orientation of the maximum horizontal stress lies in N60°E to N75°E, the horizontal maximum principal stress mainly varies from -19 MPa in the west and north to-22.5 MPa in the east and south, the relative relationship among the maximum horizontal stress, minimum horizontal stress and vertical principal stress is: σHmax >σv >σHmin, the lateral pressure coefficient reaches 1.44, and the non-uniform coefficient of the horizontal stress ranges from 1.68 to 1.77.Finally, a numerical simulation model of FMTC working face was established with FLAC3d to study the mine-introduced stress distribution rules and its evolution process based on in-situ stress field.The magnitude and change regulation of maximum vertical stress Szz, maximum horizontal stress Syy and maximum shear stress Syz has been obtained, and the mining-induced vertical stress field can be divided into five stress zones, which is similar to other mechanized mining face but for the exact values and evolution characteristics.
机译:考虑到原位应力对综合机械化的顶煤(FMTC)采矿面的采矿引起的应力的重要性,这已成为厚煤层最常见的采矿方法。使用空心包容应变计法为了测试竹县玉煤矿的原位应力,然后基于多目标约束优化方法回到原位应力场,其结果说明了最大水平应力的方向位于N60°E中到N75°E,水平最大主要压力主要在东部和南部的-19 MPa和北部到22.5 MPa,最大水平应力,最小水平应力和垂直主应力之间的相对关系是:ΣHmax >ΣV>ΣHmin,横向压力系数达到1.44,水平应力的非均匀系数为1.68至1.77.最后,FMTC工作面的数值模拟模型是基于原位应力场建立了FLAC3D,研究了雷引入的应力分布规则及其演化过程。获得了最大垂直应力SZZ的幅度和变化调节,最大水平应力SYY和最大剪切应力SYZ,以及采矿诱导的垂直应力场可分为五个应力区域,其类似于其他机械化挖掘面,而是用于确切的值和进化特性。

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