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首页> 外文期刊>Journal of Engineering Mechanics >Analysis on Limit Equilibrium Zone of Coal Pillar in Mining Roadway Based on Mechanical Model of Elastic Foundation Beam
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Analysis on Limit Equilibrium Zone of Coal Pillar in Mining Roadway Based on Mechanical Model of Elastic Foundation Beam

机译:基于弹性地基梁力学模型的采煤巷道极限平衡区分析

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摘要

To reasonably determine the limit equilibrium zone width, a coal pillar was simplified as a half-infinite load-bearing beam while its weak floor rock mass was assumed to be a continuous elastic foundation according to the mechanical characteristics of the coal pillar. This paper develops the Winkler elastic foundation beam model of a coal pillar under high bearing pressure using the elastic foundation beam analytic method. Furthermore, the deflection, diversion, bending moment, and shear force at any interface of the coal pillar are studied based on a mechanical model of the coal pillar under different bearing pressures. A theoretical calculation formula for the width of the limit equilibrium zone of the coal pillar is put forward under conditions where a shear slip appears on the elastic-plastic interface of the coal pillar. The results show that the limit equilibrium zone width of the coal pillar is closely related to the buried depth of the roadway, volumetric weight of the overburden, the stress concentration factor, the width of the elastic zone, the elastic characteristic value of the floor, the lateral pressure coefficient, the cohesive force, and the internal friction angle on the elastic-plastic interface of the coal pillar. Taking an 850-875m section of the transport gateway of the 13503 face in a Wangcun coal mine as an example, the theoretical limit equilibrium zone width of the coal pillar is calculated after the other parameters were determined. On this basis, the deformation and failure of the coal pillar in a range of 6m is tested using a borehole scope. The theoretical width of the limit equilibrium zone of the coal pillar is almost consistent with the results of the field test.
机译:为了合理确定极限平衡区的宽度,将煤柱简化为半无限承载梁,而根据煤柱的力学特性,将其弱底板岩体假定为连续弹性基础。利用弹性地基梁分析方法建立了高承载压力下煤柱的温克勒弹性地基梁模型。此外,基于煤柱在不同承载压力下的力学模型,研究了煤柱任一界面的挠度,转向,弯矩和剪切力。提出了在煤柱弹塑性界面出现剪切滑移的条件下,煤柱极限平衡区宽度的理论计算公式。结果表明,煤柱的极限平衡区宽度与巷道的埋深,上覆体的体积重量,应力集中系数,弹性带宽度,底板的弹性特征值密切相关,煤柱弹塑性界面上的侧向压力系数,内聚力和内摩擦角。以王村煤矿13503工作面运输通道850-875m断面为例,确定了其他参数后,计算了煤柱理论极限平衡区宽度。在此基础上,使用钻孔观测仪测试了6m范围内煤柱的变形和破坏。煤柱极限平衡区的理论宽度与现场测试的结果几乎一致。

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