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Roof Deformation, Failure Characteristics, and Preventive Techniques of Gob-Side Entry Driving Heading Adjacent to the Advancing Working Face

机译:邻近工作面的采空区掘进掘进工作顶板变形,破坏特征及预防技术

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In mining excavation, the roof bending subsidence of gob-side entry driving heading adjacent to the advancing working face (HAWF) can be considerable. Influenced by the original rock pressure, the front and lateral abutment pressure of the adjacent working face, and the front abutment pressure of the current working face, the support body can easily fail, leading to serious instability of the rock mass surrounding the tunnel. To study the stress state and the deformation failure mechanism of the HAWF roof structure, we use on-site survey data, numerical simulation, and theoretical calculations to fit the spatial distribution law of mining abutment pressure piecewise, and establish a dynamic mechanical model of the roof structure. We then propose a roof failure criterion and examine the roof flexure deformation behavioral pattern. We found that the central part of the roof is the main point that controls the surrounding rock. To prevent the deformation and collapse of the roof and rock surrounding the tunnel, we propose techniques that can be applied to HAWF gob-side entry driving, including setting the coal pillar width, the driving stop and restart timing, and other control concepts.
机译:在采矿开挖中,邻近前进工作面(HAWF)的采空区侧进岩行进井顶的顶板弯沉会很大。受原始岩石压力,相邻工作面的前后基台压力以及当前工作面的前基台压力的影响,支撑体很容易失效,从而导致隧道周围的岩体严重失稳。为了研究HAWF顶板结构的应力状态和变形破坏机理,我们利用现场调查数据,数值模拟和理论计算来分段拟合采矿基台压力的空间分布规律,并建立了该模型的动力力学模型。屋顶结构。然后,我们提出了屋顶破坏准则,并研究了屋顶挠曲变形行为模式。我们发现屋顶的中央部分是控制周围岩石的主要点。为了防止隧道周围的顶板和岩石变形和坍塌,我们提出了可应用于HAWF采空区侧入巷掘进的技术,包括设定煤柱宽度,行进停止和重新启动时间以及其他控制概念。

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