首页> 外文期刊>Journal of the Institution of Engineers (India). Mining Engineering Division >Optimum Design of Rib Pillars in a Longwall Mine--a Three-dimensional Numerical Modelling
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Optimum Design of Rib Pillars in a Longwall Mine--a Three-dimensional Numerical Modelling

机译:长壁矿井肋骨支柱的最佳设计 - 一种三维数值模拟

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The present paper deals with the design of optimum width of rib pillar of the longwall retreat coal mine based on three-dimensional finite element method. A case study of a typical longwall panel has been taken. Optimum width of rib pillar was determined at varying depths under similar geo-mining conditions of the typical panel. Physico-mechanical properties of the coal and other rocks are assumed to be linearly elastic, isotropic and homogeneous. Six models of different width were simulated at varying depths. The results in terms of stresses as well as factor of safety were obtained. Based on the results of factor of safety, yield percentages at factor of safety 1 and 1.3 of rib pillars were determined. Yield ratio (ratio of yield percentage at factor of safety > 1.3 and yield percentage at factor of safety < 1) was also calculated for rib pillar. Just stable condition for particular width of rib pillar is obtained at yield ratio of 5. Further, for consideration of additional factor of safety, optimum width was taken 1.5 times the calculated width of rib pillar (at yield ratio of 5).
机译:本文根据三维有限元法,涉及长墙撤退煤矿肋骨最佳宽度的设计。已经采取了对典型的长墙板的案例研究。在典型面板的类似地理挖掘条件下,在不同深度处确定肋柱的最佳宽度。假设煤和其他岩石的物理机械性能是线性弹性,各向同性和均匀的。在不同的深度下模拟了六种不同宽度的模型。获得应力和安全因素的结果。基于安全因素的结果,确定了肋骨柱的安全性1和1.3因子的产量百分比。还计算肋骨柱的屈服比(安全百分比的屈服百分比与安全百分比> 1.3的百分比<1)。仅以屈服比为5.进一步获得肋骨柱的特定宽度的稳定条件,考虑到额外的安全因子,纳米肋柱的宽度为1.5倍的最佳宽度(以屈服比为5)。

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