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首页> 外文期刊>Arabian journal of geosciences >Borehole stress monitoring analysis on advanced abutment pressure induced by Longwall Mining
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Borehole stress monitoring analysis on advanced abutment pressure induced by Longwall Mining

机译:长壁开采引起的先进基台压力钻孔应力监测分析

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The paper presented the research on the dynamic advanced abutment stress induced by longwall mining with borehole stress meters on mining side coal mass. Twenty vibrating wire borehole stress meters were installed into the extracting coal mass wall of a first mining roadway of 910 m depth in Zhuji Coal Mine, China, and were used to monitor dynamic changes in vertical and horizontal stresses. Three months of continuous monitoring and further analysis showed that the impacting distance of advanced abutment stress induced by mining in the strike of the working face along its central axis was the farthest, greater than 250 m (the face length is 220 m); it gradually decreased in the radial direction of the face from its central axis outward; the pressure peak was located within 24 m in the front of the mining coal wall; non-synchronous caving of the layered mudstone roof at the stope occurred. Comparison between vertical and horizontal stress increments indicated that the horizontal stress was much smaller than the vertical stress in the coal mass of mining side, while the latter's magnitude determined the drastic degree of mine pressure manifestation. The study has been applied to determine the advanced support length of the working face and further provide a reliable basis to forecast such dynamic disasters as rock burst, coal and gas outburst, etc., as well as to design the asymmetric supports on both sides of a gateway.
机译:本文介绍了用钻孔应力仪对长壁开采在开采侧煤体上引起的动态高级基台应力的研究。在中国诸暨煤矿的第一条910m深度的采煤巷道的抽采煤壁上安装了20根振弦式钻孔应力计,用于监测垂直和水平应力的动态变化。经过三个月的连续监测和进一步分析,工作面沿中心轴线走向,采矿引起的高级基台应力的冲击距离最远,大于250 m(面长为220 m)。它从其中心轴向外沿其径向逐渐减小。压力峰值位于采煤壁前24 m以内。采场层状泥岩顶板发生了非同步崩落。垂直和水平应力增量的比较表明,水平应力远小于开采侧煤体的垂直应力,而后者的大小决定了煤矿压力表现的剧烈程度。该研究已被用于确定工作面的超前支撑长度,并进一步为预测岩石破裂,煤与瓦斯突出等动态灾害提供了可靠的依据,并为工作面的两侧设计了不对称支撑。一个网关。

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