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首页> 外文期刊>Quarterly Journal of Engineering Geology and Hydrogeology >Design optimization of room and pillar mines: a case study of the Xianglushan tungsten mine
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Design optimization of room and pillar mines: a case study of the Xianglushan tungsten mine

机译:房间和支柱矿业设计优化 - 以湘水钨矿的案例研究

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摘要

This paper presents the design optimization for the Xianglushan tungsten mine using the room and pillar mining technique. The influence of pillar height, pillar length, pillar width, room length and room width on the stability of room and pillars was examined through analyses using the orthogonal experimental design method. The pillar and room sizes were identified as the most critical factors. The types of rock masses in the Xianglushan tungsten mine were identified in terms of rock mass classification and the mechanical parameters of those rock masses were assessed. A numerical model was developed in the continuum-based finite-element program 3D-sigma to simulate the excavation process. Given fixed mining and pillar heights, the maximum room width and minimum pillar width were calculated. A separate calculation was also conducted to assess the stable excavation span using the stability graph method. The results obtained from numerical parametric study and empirical-based analysis are consistent. A comprehensive field monitoring programme is introduced, including the data from acoustic emissions, stresses and displacements. The measured responses of pillars and roof rock demonstrate that the proposed design optimization is effective.
机译:本文介绍了使用房间和支柱挖掘技术的湘岛钨矿的设计优化。采用正交实验设计方法,通过分析检查柱高,支柱长度,支柱宽度,房间长度和房间宽度对房间和支柱稳定性的影响。支柱和房间尺寸被确定为最关键的因素。在岩体矿石矿石中的岩体类型在岩石质量分类方面被鉴定,并评估了那些岩体的机械参数。在基于连续体的有限元程序3D-Sigma中开发了一个数值模型,以模拟挖掘过程。给定固定采矿和支柱高度,计算最大房间宽度和最小柱宽度。还进行了单独的计算,以评估使用稳定性曲线图方法评估稳定的挖掘跨度。从数值参数研究和基于经验的分析获得的结果是一致的。介绍了一个综合的现场监测计划,包括来自声排放,压力和位移的数据。柱子和屋顶岩石的测量响应表明,所提出的设计优化是有效的。

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