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Distribution Law of Mining Stress of the Gob-Side Entry Retaining in Deep Mining Thin Coal Seam

机译:深矿薄煤层浇注胶侧入口矿床矿强胁迫的分布规律

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In order to explore the mining pressure development rule of gob-side entry retaining during deep thin coal seam mining, FLAC 3D numerical simulation is applied to analyze the stress distribution rule of gob-side entry retaining, observing the left third working face of 49 # coal seam in No. 8 mining area of Xinxing Coal Mine as the research object. The results show that the working face stress field is asymmetrical which is caused by the reserved roadway and the over goaf. After roadway tunneling, features of obvious stress redistribution are formed. The vertical and horizontal stress in the coal seam develop a U-shaped distribution. The vertical stress in the roadway is less than that in the lower roadway, and the horizontal stress is half that in the lower roadway. The phenomenon of high stress “nucleation” appears and becomes more obvious in the process of working face advancing, and the nuclear body disappears after working face advanced to the boundary line. With the working surface advancing, the trend of horizontal stress of gob-side entry retaining decreases gradually and the vertical stress of gob-side entry retaining is less than the original rock stress. The research findings provide a basis for the supporting design of gob-side entry retaining in the deep thin coal seam and the stability control of surrounding rock.
机译:为了探讨深层煤层挖掘过程中GOB侧进入保留的采矿压力发展规则,FLAC 3D数值模拟应用于分析GOB侧进入保留的应力分布规则,观察49#的左图第三工作面新兴煤矿8号矿区煤层作为研究对象。结果表明,工作面应力场是不对称的,这是由保留的巷道和过度粘度引起的。走路隧道后,形成明显的应力再分配。煤层中的垂直和水平应力产生U形分布。道路上的垂直应力小于下行道上的垂直应力,水平应力是下行道上的一半。在工作面前的过程中出现高应力“成核”的现象,在工作面前的过程中变得更加明显,并且在工作面向边界线后核体消失。随着工作表面推进,GOB侧进入保持逐渐降低的水平应力的趋势逐渐降低,并且GOB侧进入保持的垂直应力小于原始岩石应力。研究结果为深层煤层中的GOB侧进入保留和周围岩石的稳定控制提供了基础。

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