Structural effect of a soft–hard backfill wall in a gob-side roadway

Wang Hongsheng , Zhang Dongsheng , Fan Gangwei
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引用次数: 14

Abstract

The stability of a backfill wall is critical to implement gob-side entry driving technology in which a small coal pillar is substituted by a waste backfill wall. Based on features of surrounding rock structures in the backfill wall, we propose a mechanical model on the structural effect of a soft–hard backfill wall using theory analysis, physical experiments and a numerical simulation. The results show that the deformation of the structure of the soft–hard backfill wall is coordinated with the roof and floor. The soft structure on the top of the backfill wall can absorb the energy in the roof by its large deformation and adapt to the given deformation caused by the rotation and subsidence of a key rock block. The hard structure at the bottom of the backfill wall can absorb the strong supporting resistance from the top surrounding rock. The soft structure on the top protecting the hard bottom structure by its large deformation contributes to the stability of the entire backfill wall. An application indicated that the stress in the backfill wall effectively decreased and its deformation was significantly reduced after the top coal remained. This ensured the stability of the backfill wall.

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某空边巷道软-硬回填墙结构效应
采用废石充填墙替代小煤柱采空区进巷技术,充填墙的稳定性是实现该技术的关键。根据回填墙围岩结构特点,采用理论分析、物理实验和数值模拟相结合的方法,建立了软硬回填墙结构效应的力学模型。结果表明:软-硬回填墙结构变形与顶底板结构变形协调一致;回填墙顶部软结构以其较大的变形量吸收顶板的能量,适应关键岩块的旋转沉降所引起的给定变形。回填墙底部的坚硬结构可以吸收上部围岩的强支撑阻力。上部软结构以其较大的变形量保护下部硬结构,有利于整个回填墙的稳定。应用表明,顶煤留置后,回填壁面应力有效减小,变形明显减小。保证了回填墙的稳定性。
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