Stability analysis and control countermeasures of surrounding rock of gob-side entry formed by roof-cutting in inclined coal seams

Enze Zhen, Shizhuo Dong, Xiaowei Xu, Yajun Wang, Mengxiang Wang
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Abstract

The stability of the surrounding rock in the inclined coal seam stope is crucial for the safety of the gob-side entry. In this article, we systematically analyze the surrounding rock stability of the gob-side entry formed by roof-cutting (GEFR) in an inclined coal seam. We identify three forms of roof structure evolution in the formation process of GEFR and analyze the two main modules affecting the deformation of the surrounding rock structure. We determine the critical elements of surrounding rock deformation in different stages of the GEFR retaining process. Further, we propose a classification of the deformation of the surrounding rock structure of GEFR into stress and structural types during stabilization. We analyze the length of the gangue side's bearing area and calculate the lateral gangue's impact energy. We establish three instability modes of the roof based on the fractured state of the roof structure of the GEFR and provide a mechanical criterion of instability. Finally, based on the results of our theoretical analysis, we propose a control principle for the surrounding rock deformation of GEFR and establish countermeasures for controlling the roof-cutting angle and an asymmetric coupling support system. A field case study was conducted under conditions involving an inclined thick coal seam to investigate the surrounding rock deformation and overburden stress evolution using field monitoring data. The field test results confirm that the control measures of the control roof-cutting angle and the asymmetric coupling support system positively impact the stability of the surrounding rock of the roof-cutting entry in an inclined coal seam.
倾斜煤层顶板掘进巷道围岩稳定性分析及控制对策
倾斜煤层巷道围岩的稳定性对采煤巷道的安全至关重要。本文系统分析了倾斜煤层中通过顶板切割(GEFR)形成的巷道围岩稳定性。我们确定了 GEFR 形成过程中的三种顶板结构演变形式,并分析了影响围岩结构变形的两个主要模块。我们确定了 GEFR 保压过程不同阶段围岩变形的关键因素。此外,我们还提出了 GEFR 围岩结构变形的分类方法,即稳定过程中的应力类型和结构类型。我们分析了矸石侧承载区的长度,并计算了矸石的侧向冲击能量。我们根据 GEFR 顶板结构的断裂状态建立了三种顶板失稳模式,并提供了失稳的力学标准。最后,基于理论分析结果,我们提出了 GEFR 围岩变形的控制原理,并建立了控制顶板切角的对策和非对称耦合支护系统。在倾斜厚煤层条件下进行了现场案例研究,利用现场监测数据对围岩变形和覆岩应力演变进行了研究。现场试验结果证实,控制顶板切削角和非对称耦合支护系统的控制措施对倾斜煤层中顶板切入围岩的稳定性有积极影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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