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倾斜岩层沿空巷道层状顶板稳定性分析与控制方法

Stability Analysis and Control Methods of a Layered Roof of Gob-Side Entry in Inclined Rock Strata.

作者信息

Zhu Ye, Yang Ke, Hua Xinzhu, Li Weiyu

机构信息

State Key Laboratory of Mining Response and Disaster Prevention and Control in Deep Coal Mines, Anhui University of Science and Technology, Huainan, Anhui 232001, China.

Institute of Energy, Hefei Comprehensive National Science Center, Hefei, Anhui 230031, China.

出版信息

ACS Omega. 2023 Sep 15;8(38):34534-34548. doi: 10.1021/acsomega.3c03300. eCollection 2023 Sep 26.

Abstract

In view of the instability of a layered roof of the gob-side entry in inclined rock strata, with the engineering background of the gob-side entry with a small-width coal pillar in Xutuan Mine, the deformation and failure characteristics of the layered roof and the control measures in inclined rock strata are studied by comprehensively adopting field investigation, numerical calculation, theoretical analysis, and engineering tests. The results show the following. (1) After the instability of the layered roof, an unstable zone, a substable zone, and a stable zone are formed accordingly in the surrounding rock from shallow to deep. The unstable zone is an active area in terms of roof deformation and is the main object in the surrounding rock control. The substable zone has a macro control effect on roof deformation. The stable zone is the main bearing structure of the roof. (2) The rock structure has a significant regulatory effect on roof deformation and damage. As the thickness of the layers increases, the bearing capacity of each layer increases and the overall strength of the roof increases. At the same time, the influence range of the substable zone increases, which has a restraining effect on the expansion of the unstable zone. (3) The maximum deformation of the roof decreases exponentially with the increase in thickness of the roof rock beam, increases linearly with the increase in lateral pressure and roof load, and increases exponentially with the increase in entry span. (4) Based on the "two enhancements and one weakening" surrounding rock control strategy, a support system with "high-strength bolts and cables, shotcrete, and anchor grouting" as the core is proposed. The results of field tests indicate that the designed support scheme effectively controls the deformation of the layered roof and achieves long-term stability of the gob-side entry with a small-width coal pillar.

摘要

针对倾斜岩层沿空巷道层状顶板的稳定性问题,以许疃矿小煤柱沿空巷道为工程背景,综合采用现场调研、数值计算、理论分析和工程试验等方法,对倾斜岩层中沿空巷道层状顶板的变形破坏特征及控制措施进行了研究。研究结果表明:(1)层状顶板失稳后,围岩由浅到深依次形成不稳定区、次稳定区和稳定区。不稳定区是顶板变形的活跃区域,是围岩控制的主要对象;次稳定区对顶板变形具有宏观控制作用;稳定区是顶板的主要承载结构。(2)岩层结构对顶板变形破坏具有显著的调控作用。随着岩层厚度增加,各岩层承载能力增大,顶板整体强度提高,同时次稳定区影响范围增大,对不稳定区扩展具有抑制作用。(3)顶板最大变形量随顶板岩梁厚度增加呈指数减小,随侧向压力和顶板载荷增加呈线性增大,随巷道跨度增加呈指数增大。(4)基于“两强一弱”围岩控制策略,提出了以“高强锚杆锚索、喷射混凝土、锚注”为核心的支护体系。现场试验结果表明,所设计的支护方案有效控制了层状顶板变形,实现了小煤柱沿空巷道的长期稳定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6b4/10536115/b387c3359220/ao3c03300_0001.jpg

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