Geomechanical substantiation of the parameters for the mining system with ore shrinkage in the combined mining of steep-dipping ore bodies

IF 2.8 Q2 MINING & MINERAL PROCESSING Mining of Mineral Deposits Pub Date : 2022-12-30 DOI:10.33271/mining16.04.115
Tyiak Isabek, Yerbol Orynbek, Kamchybek Kozhogulov, Zhadyra Sarkulova, Lazzat Abdiyeva, S. Yefremova
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Abstract

Purpose. The research purpose is to substantiate a rational technology for mining steep-dipping ore bodies based on a complex of geomechanical studies in combined mining of deposits. Methods. Analysis of existing constructive methods for calculating the optimal mining system parameters when mining under-open-pit ore reserves in the zone of influence of surface mining operations, taking into account the natural stress-strain state of the rock mass. Numerical modeling is used to study the geomechanical processes occurring in the mass during the mining of under-open-pit reserves of steep-dipping ore bodies in order to substantiate the mining system with ore shrinkage. The geotechnical mapping of mine workings is conducted directly in the face to determine the mass rating. Findings. The calculation of the optimal parameters for the stope chamber, inter-chamber and inter-level pillars based on a complex of geomechanical studies has shown that the more intense horizontal stresses act in the bottom of the blocks and in the inter-block pillars, in which a large number of board gates have been driven. Originality. For the first time, using high-precision programs and given the nonuniform distribution of horizontal and vertical stresses acting in the mass for the Abyz Mine conditions, it has been revealed that when mining an individual block, the maximum horizontal stresses around the mined-out space reach 10-15 MPa; when mining a group of blocks – 20-25 MPa. Practical implications. The research results can be used in planning and mining with shrinkage of steep-dipping ore bodies during mining of under-open-pit reserves.
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大倾角矿体联合开采含矿收缩采矿系统参数的地质力学实证研究
意图研究目的是在矿床联合开采地质力学研究的基础上,证实一种合理的急倾斜矿体开采技术。方法。分析现有的构造方法,以计算在露天采矿作业影响区内露天矿储量下开采时的最佳采矿系统参数,同时考虑岩体的自然应力-应变状态。采用数值模拟方法研究了急倾斜矿体露天矿下储量开采过程中岩体发生的地质力学过程,以证实存在矿石收缩的开采系统。矿山工作区的岩土工程测绘直接在工作面上进行,以确定质量等级。调查结果。基于复杂的地质力学研究,对采场室、室间和层间矿柱的最佳参数进行了计算,结果表明,更强烈的水平应力作用在块体底部和块体间矿柱中,其中驱动了大量的板门。独创性首次使用高精度程序,考虑到Abyz矿山条件下作用在岩体中的水平和垂直应力的不均匀分布,研究表明,在开采单个区块时,采空空间周围的最大水平应力达到10-15MPa;当开采一组区块时,压力为20-25兆帕。实际意义。研究结果可用于急倾斜矿体在露天矿下开采过程中的收缩规划和开采。
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来源期刊
Mining of Mineral Deposits
Mining of Mineral Deposits MINING & MINERAL PROCESSING-
CiteScore
5.20
自引率
15.80%
发文量
52
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