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Numerical study on zonal disintegration of rock mass around deep underground openings

机译:地下深部洞口岩体分区破碎的数值研究

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With mining activity developing to deeper area, a failure mode called zonal disintegration (ZD) has been found. That is, after excavation, there were some alternating regions of fracture zones and relatively intact zones around or in front of the working face, which is quite different from the traditional understanding of rock failure mode. A three dimensional numerical model is applied to simulate the zonal disintegration phenomenon. Results of numerical simulation show that a higher compressive stress along axial direction of the openings does cause the occurrence of ZD phenomenon, but only under a certain boundary condition. The fracture rings are neither closed rings nor continuous one both in the radial and axial direction. The propagation of ZD is in a spiral way around openings. Most of the fracture zones occur in the area of brittle rock mass with high strength and high elastic modulus. For parallel closed-spaced openings, in the vicinity of openings, the fracture rings enclose each opening separately; with the increasing of distance from the opening periphery, the fracture rings enclose the two openings. The distance between each two fracture rings and the number of fracture rings have close relation with the heterogeneity of the rock mass.
机译:随着采矿活动向更深的地区发展,已经发现了一种称为带状崩解(ZD)的破坏模式。也就是说,在开挖之后,工作面周围或前面存在一些断裂区域和相对完整区域的交替区域,这与传统的对岩石破坏模式的理解有很大不同。应用三维数值模型模拟了区域崩解现象。数值模拟结果表明,沿开口轴向的较高的压缩应力确实会引起ZD现象的发生,但仅在一定的边界条件下才发生。断裂环既不是闭合环,也不是沿径向和轴向连续的环。 ZD的传播以螺旋方式围绕开口。大部分断裂带出现在具有高强度和高弹性模量的脆性岩体区域。对于平行的等距开口,在开口附近,断裂环分别封闭每个开口;随着距开口周边距离的增加,断裂环围住两个开口。每两个断裂环之间的距离和断裂环的数量与岩体的非均质性密切相关。

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