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Comparison of closure measurements with finite element model results in an underground coal mine in central Utah

机译:犹他州中部地下煤矿的封闭测量与有限元模型比较

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Quantitative analysis of mine-wide subsidence at the kilometer scale and details of stress distribution about an advancing longwall face are estimated using an adaptation of the finite element method. The method is well suited to the tasks at hand. For greater realism, variability of strata properties is taken into account as are the effects of joints and cleats on elastic moduli and strengths. Evolution of pillar stress and entry closure remote from the face is readily quantified in a series of analyses that simulate face advance. Computed results compare favorably with the evolution of closure measurements about an instrumented pillar in a two-entry headgate. The appropriateness of the finite element method is confirmed. This method is based on first principles that avoid empirical schemes of uncertain applicability and numerical models ‘‘calibrated'' by fitting computer output to mine measurements.
机译:使用适应性有限元方法,可以估算全公里范围内矿山塌陷的定量分析以及长壁工作面应力分布的细节。该方法非常适合手头的任务。为了获得更大的真实感,考虑了层属性的可变性,以及节理和夹板对弹性模量和强度的影响。通过一系列模拟面部前进的分析,可以轻松地量化远离面部的柱应力和入口封闭的演化。计算结果与两入式闸门中的仪表柱封闭测量结果的演变相比具有优势。确定了有限元方法的适当性。该方法基于避免将不确定性适用的经验性方案和通过将计算机输出与矿山测量值相匹配而“校准”的数值模型的经验原理。

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