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Monitoring and Analysis of Stress and Deformation Features of Boundary Part of Backfill in Metal Mine

机译:金属矿井回填边界部分应力和变形特征的监测与分析

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The backfill mining method is widely used in metal mines. A large and thick backfill body has formed in the No.2 zone of Jinchuan Nickel Mine, and its stability is critical for mining safety. In order to study the mechanical behavior of the boundary part of backfill, ground subsidence monitoring, underground filed monitoring of displacement, and stress and numerical simulation were conducted to analyze stress distribution and deformation of backfill. According to underground monitoring, the bed separated displacement has the consistent trend with ground subsidence in the mine area. Based underground stress monitoring, both horizontal and vertical stress of the internal part of backfill is less than the stress boundary part of the backfill. The characteristic of backfill boundary outline is a step-profile. Contact interaction between the surrounding rock and backfill led to complex stress distribution. According to stress monitoring of the boundary points in a numerical model, the multi-peak value of stress development is the major feature of the boundary part of backfill. The multi-peak stress behavior of the boundary part of backfill was influenced by mining depth. The boundary part of backfill deformation influenced the local stability of mining. This article provided a scientific basis for strength design and the support choice of a metal mine by the method of backfill mining.
机译:回填采矿方法广泛用于金属矿山。在金川镍矿的2号区域形成了一个大型厚的回填体,其稳定性对于采矿安全至关重要。为了研究回填的边界部分的力学行为,进行地面沉降监测,地下提交的位移监测,并进行了应力和数值模拟,以分析压力分布和回填的变形。根据地下监控,床分离的位移具有矿区地下沉降的一贯趋势。基于地下应力监测,回填内部部分的水平和垂直应力小于回填的应力边界部分。回填边界轮廓的特征是逐步配置文件。周围岩石和回填之间的接触相互作用导致复合应力分布。根据数字模型中的边界点的应力监测,应力开发的多峰值是回填边界部分的主要特征。回填的边界部分的多峰应力行为受采深度的影响。回填变形的边界部分影响了采矿的局部稳定性。本文为通过回填采矿方法提供了强大设计和金属矿的支持选择。

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