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Friendly and Resource-Saving Methods of Underground Ore Mining in Disturbed Rock Masses

机译:令人不安的岩石地下矿井友好和资源储蓄方法

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摘要

One of the most problematic aspects in underground ore extraction in mining-disturbed rock masses is backfilling of man-made voids, which affect origination and redistribution of stress-strain state of the rock mass. Their existence in the earth's crust provokes subsidence/collapse of the day surface and also contributes to arising geomechanical and seismic phenomena. The purpose of the study is to substantiate environmental-friendly and resource-saving methods for backfilling of voids in underground ore mining based on revealing the features of rock integrity of the day surface and life-sustaining activity of the population living in the mining-affected area. The main negative consequences of the impact of mining on the environment and humans are high costs for conserving day surface and ensuring life-sustaining activity of the population living in the mining-affected area, as well as removing large areas of land from human activity, etc. Based on the study of a rock mass stress-strain state using geophysical and surveying methods, an environment-friendly method for backfilling of man-made voids in disturbed rock masses is proposed. It enables ensuring the integrity of the day surface and life-sustaining activity of the population living in the mining-affected area (in the vicinity of mines, dumps, sites of backfilling complexes, preconcentration and heap leaching of metals from substandard ores, tailings storage facilities, etc.). Combined geotechnologies are proposed for backfilling of voids during the development of ore deposits by underground block leaching, and scientific and methodological and technical support was provided for drilling and blasting preparation of hard ores and underground leaching of pilot blocks at the Michurinsky deposit of GP VostGOK, Ukraine. The research findings can be used in underground mining of ore deposits of complicated structure.
机译:一个在采矿扰动岩体地下矿开采最容易出问题的环节是回填人为空隙,影响起源和岩体应力应变状态的再分配。它们在地壳中存在挑衅天面的沉降/塌陷,也有助于产生的地质力学和地震现象。这项研究的目的是为了充实环保和方法基础上揭示了一天表面的岩石完整性和人口居住在受影响采矿的维持生命活动的特征,地下矿开采空洞回填资源节约型区域。采矿对环境的影响主要负面后果和人类对于保护天面,确保人口居住在采矿影响地区的维持生命活动的,以及人类活动消除大面积的土地成本高,等。基于岩体应力应变状态的使用地球物理和测量方法研究的基础上,提出了在受到干扰的岩体人造空隙回填的环境友好的方法。它能够保证一天表面和人口生活在采矿影响地区维持生命活动的完整性(在矿井附近,倾倒,回填物,富集和堆从不合格矿石金属浸出,尾矿库的网站设施等)。结合geotechnologies提出通过地下块浸和科学方法和技术支持矿床的开发过程中空隙的回填进行钻眼,以提供和爆破准备硬矿石和地下的GP VostGOK的Michurinsky存款试点块的浸出,乌克兰。研究结果可以在结构复杂的矿床地下开采使用。

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