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Partitioning Control Mechanism and Engineering Practice of Rebuilding Bearing Arch in Surrounding Rock under High Ground Stress

机译:高层应力下岩石周围岩拱重建轴拱的分区控制机制及工程实践

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The mining of coal seam has a significant influence on the stability of the roadway near it, especially under the condition of high ground stress. To study the control mechanism of the surrounding rock under the influence of high ground stress, a general idea for the partition control of the rebuilding bearing arch (RBA) was proposed in this paper. Based on the basic mechanical performance test of the bearing arch, this paper built a mechanical model of the RBA based on Protodyakonov’s pressure arch theory, analyzed the influence of the strength of the bearing arch on the surrounding rock failure, and obtained the ultimate thickness of the bearing arch failure under high ground stress. The results show that the RBA’s damage is closely related to the overburden load and RBA’s thickness. The tensile stress and shear stress of RBA increase linearly with the overburden load increase and increase sharply with the load-bearing arch’s thickness, showing a nonlinear relationship. To maintain the surrounding rock’s stability, it is necessary to ensure that the RBA’s thickness is within a specific range. The results are applied to the Wantian coal mine. The theoretically determined load-bearing thickness is 10?m, which can effectively control the surrounding rock deformation and significantly reduce the roadway’s repair rate.
机译:煤层采矿对其附近的道路的稳定性产生了重大影响,特别是在高地应力的条件下。为了在高地应力的影响下研究周围岩石的控制机制,本文提出了重建轴拱(RBA)分区控制的一般思路。基于轴承拱的基本机械性能试验,本文基于ProtododaKonov的压力拱理论,建立了RBA的机械模型,分析了轴承弓对周围岩石破坏的影响,并获得了最终的厚度高地应力下的轴承拱故障。结果表明,RBA的损坏与覆盖载荷和RBA的厚度密切相关。 RBA的拉伸应力和剪切应力随着覆盖载荷的增加而导致线性增加,随着承载拱的厚度急剧增加,显示出非线性关系。为了保持周围的岩石的稳定性,有必要确保RBA的厚度在特定范围内。结果适用于万象煤矿。理论上确定的承重厚度为10?M,可以有效地控制周围的岩石变形,并显着降低了巷道的维修率。

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