首页> 外文会议>International conference on ground control in mining >Deep Cover Bleeder Entry Performance and Support Loading: A Case Study
【24h】

Deep Cover Bleeder Entry Performance and Support Loading: A Case Study

机译:深层采血机的性能和支撑载荷:一个案例研究

获取原文
获取外文期刊封面目录资料

摘要

How well do current modeling procedures calculate the rear abutment extent and loading? Does an improved understanding of the rear abutment extent warrant a change in standing support in bleeder entries? What is the optimal standing support for bleeder entries separated from the longwall startup room by a barrier pillar? To help answer these questions and to determine the current utilization of standing support in bleeder entries, four bleeder entries at varying distances from the startup room were instrumented, observed, and numerically modeled. This evaluation was intended to determine the rear abutment extent and magnitude at various locations to optimize standing support in these entries and those under similar conditions. This paper details observations made by NIOSH researchers in the bleeder entries of a deep cover longwall panel; specifically data collected from instrumented pumpable cribs, observations of the conditions of the entries, and numerical modeling of the bleeder entries during longwall extraction. The primary focus was on the extent and magnitude of the abutment loading experienced by the standing support. As expected, the instrumentation of the standing supports showed very little loading relative to the capacity of the standing supports-less than 25 tons load and 1 inch convergence. The observations of the conditions showed little to no change from before the longwall panel extraction began to when the panel was more than 50% extracted. In addition to the observation and instrumentation, numerical modeling was performed to evaluate the bleeder design. The Flac3D program was used to evaluate these four bleeder entries using previously defined modeling and input parameter estimation procedures. The results indicated only a minor increase in load during the extraction of the longwall panel. The model showed a much greater increase in stress due to the development of the gateroad and bleeder entries, with about 80% of the increase associated with development and 20% with longwall extraction. The Flac3D model showed very good correlation between expected gateroad loading during panel extraction and those expected based on previous studies. The front and side abutment extent modeled was very similar to observations from this and previous panels with similar conditions. The results of this study showed that the rear abutment stress experienced by this bleeder entry design was minimal. The convergence measured in these bleeder entries was small enough not to mandate any additional support beyond development even by U.S. or Australian standards. The pumpable crib load and convergence experienced depends on the geological setting, mining geometries, and timing. The farther away from the startup room, the lower the applied load and smaller the convergence in the entry if all else is held constant. Finally, the numerical modeling method used in this study was capable of replicating the expected and measured results near seam.
机译:当前的建模程序如何很好地计算后基台的范围和载荷?增强对后基台范围的了解是否需要改变放气口的站立支撑?通过屏障支柱与长壁启动室隔开的放气口的最佳站立支撑是什么?为了帮助回答这些问题并确定放气口中站立支撑的当前利用率,对距启动室不同距离的四个放气口进行了检测,观察和数值建模。评估的目的是确定各个位置的后邻接范围和大小,以优化这些入口和类似条件下的站立支撑。本文详细介绍了NIOSH研究人员在深层长壁面板的放气孔中的观察结果。特别是从仪器化的​​可泵送婴儿床中收集的数据,对入口条件的观察以及在长壁抽取过程中放气入口的数值模型。主要重点是站立支撑承受的基台载荷的程度和大小。如预期的那样,相对于直立支撑架的能力,直立支撑架的仪器显示出非常小的负载-小于25吨负载和1英寸会聚度。从长壁板提取开始到板提取率超过50%之前,对条件的观察显示几乎没有变化。除了观察和检测仪器外,还进行了数值建模,以评估泄放器的设计。 Flac3D程序用于使用先前定义的建模和输入参数估计程序来评估这四个泄放项。结果表明,在长壁面板的拔出过程中,载荷仅略有增加。该模型显示出由于闸道和泄放洞入口的发展而导致的应力增加更大,其中约80%的增长与发展有关,而20%的增长与长壁开采有关。 Flac3D模型显示了面板提取过程中预期的闸道荷载与基于先前研究的预期的闸道荷载之间的很好的相关性。建模的前和侧面邻接程度与本面板和先前面板在类似条件下的观察结果非常相似。这项研究的结果表明,这种泄气口设计承受的后基台应力最小。在这些放血条目中测得的趋同程度很小,即使按照美国或澳大利亚的标准,也不能要求开发以外的任何其他支持。可泵送婴儿床的负载和会聚程度取决于地质环境,采矿几何形状和时间安排。如果所有其他条件保持不变,则离启动室越远,施加的负载越低,并且入口的收敛性越小。最后,本研究中使用的数值建模方法能够复制靠近煤层的预期和测量结果。

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