【24h】

3D strain softening modelling of coal pillars in a deep longwall mine

机译:深长壁矿井煤柱的3D应变软化建模

获取原文

摘要

In longwall coal mines,the entries on both sides of the panel play a significant role in production rate and safety of operation. With increasing production amount,the rate of conveying material through such entries increases. Therefore,it is required to design wider entries. Support of these entries,particularly in deep mines is difficult.In this paper,by using FLAC3D program code a deep longwall coal mine is modeled. The coal seam has a strain softening property,and the analysis index of stress and deformation of ribsides and coal pillars at different loading levels are determined. Strain softening parameters is studied separately for each modeled coal pillar,and based on conventional formula the pillar strength are calculated. In a modeled longwall mine,the caving material at goaf zone are fully compact. The results shows that based on Mohr-Coulomb model,the strain softening occurs at maximum cohesion and friction,and at region of decreasing the strength of pillar in stress-strain curve. Because of 3D nature of analyses,the effect of front and side abutment load on stability of pillar are studied simultaneously. Therefore,the results of this study could be suitable criteria for appraisal of pillar design method at deep longwall coal mines.
机译:在长壁煤矿中,面板两侧的入口对生产率和操作安全性起着重要作用。随着产量的增加,通过这种入口的物料输送速率增加。因此,需要设计更多的条目。这些条目的支持尤其是在深部煤矿中是困难的。本文通过使用FLAC3D程序代码对深长壁煤矿进行了建模。该煤层具有应变软化特性,确定了不同载荷水平下的肋骨和煤柱的应力和变形的分析指标。分别研究了每个模型煤柱的应变软化参数,并基于常规公式计算了煤柱强度。在模型化的长壁矿井中,采空区的放顶材料是完全致密的。结果表明,基于Mohr-Coulomb模型,应变软化发生在最大的内聚力和摩擦力处,并且在应力-应变曲线中出现在柱强度降低的区域。由于分析的3D性质,因此同时研究了前后基台载荷对支柱稳定性的影响。因此,本研究结果可作为评价深长壁煤矿立柱设计方法的合适标准。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号