首页> 外文学位 >STABILITY OF THE WORKING HIGHWALL IN A STRIP MINING OPERATION AND COMPARISON OF THE FAILURE IN A PHYSICAL MODEL WITH THAT OF A TWO-DIMENSIONAL FINITE ELEMENT ANALYSIS (OKLAHOMA).
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STABILITY OF THE WORKING HIGHWALL IN A STRIP MINING OPERATION AND COMPARISON OF THE FAILURE IN A PHYSICAL MODEL WITH THAT OF A TWO-DIMENSIONAL FINITE ELEMENT ANALYSIS (OKLAHOMA).

机译:在带钢采矿作业中工作的高稳定性以及在物理模型中的故障比较(二维有限元分析(俄克拉荷马州))。

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摘要

This study is comprised of an analysis of slope stability in strip mines using a finite element model as well as a physical model. The physical model was designed to simulate typical rather than specific strip mine conditions in Oklahoma. The study includes the selection of the physical model material and the design of the loading apparatus based on dimensional analysis. The failure surface geometry and front surface displacements of the model when loaded were studied and comparisons have been made between the test results. The displacements represent the initial movement of the slope. It was found that the slope remains stable unless a failure surface appears which intersects the plane of weakness. In order to numerically model typical conditions in a strip mine, a two-dimensional plane strain analysis employing the finite element method was used and a simplified method for strip mine stability has been developed. The results obtained from this method were compared to the physical model. The failure surface geometry and the front surface displacement followed a pattern similar to that obtained by the experimental investigation.
机译:这项研究包括使用有限元模型和物理模型对露天矿的边坡稳定性进行分析。设计该物理模型是为了模拟俄克拉荷马州的典型而不是特定的露天矿条件。研究包括物理模型材料的选择和基于尺寸分析的加载设备的设计。研究了加载时模型的破坏表面几何形状和前表面位移,并对测试结果进行了比较。位移表示坡度的初始运动。已经发现,除非出现与弱化平面相交的破坏面,否则该斜坡保持稳定。为了对带状矿山的典型条件进行数值模拟,使用了有限元方法的二维平面应变分析,并开发了简化的带状矿山稳定性的方法。从该方法获得的结果与物理模型进行比较。破坏表面的几何形状和前表面位移遵循与实验研究相似的模式。

著录项

  • 作者

    MANESH, ABDULKARIM NICK.;

  • 作者单位

    The University of Oklahoma.;

  • 授予单位 The University of Oklahoma.;
  • 学科 Engineering Mining.
  • 学位 Ph.D.
  • 年度 1983
  • 页码 246 p.
  • 总页数 246
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 矿业工程;
  • 关键词

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