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A numerical study into factors affecting stress and pore pressure in free draining mine stopes

机译:自由排水矿山采场应力和孔隙压力影响因素的数值研究

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This paper presents a modified version of Gibson's chart that may be used to identify "free draining" mine backfill situations. I.e. fill situations in which the phreatic surface falls below the fill height during filling operations (assuming adequate barricade drainage). A fully coupled multi-physics finite element model is then used to demonstrate the importance of computing the elevation of the phreatic surface as part of the simulation, rather than specifying it as done in many previous models. A parametric study is presented to identify material properties that most significantly influence the pore pressures and barricade stresses within a free draining mine stope. It is shown that the soil-water retention properties influence pore pressures most significantly, while barricade stress is influenced by the strength (particularly the cemented component), the coefficient of at rest earth pressure as well as soil-water retention properties.
机译:本文介绍了吉布森图表的修改版本,可用于识别“自由排水”矿井回填情况。即在填充操作期间潜水面下降到填充高度以下的情况(假设路障排水充分)。然后,使用完全耦合的多物理场有限元模型来演示计算潜水面高程作为仿真一部分的重要性,而不是像以前的许多模型中那样指定它。提出了一项参数化研究,以确定最显着影响自由排水矿场内的孔隙压力和路障应力的材料特性。结果表明,土壤保水性能对孔隙压力的影响最大,而路障应力受强度(特别是胶结组分),静土压力系数以及土壤保水性能的影响。

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