Relationship between Geomechanics and Subsoil Use from the Perspective of the Legislative Definition of the Term 'Subsoil'

Q4 Engineering Gornaya Promyshlennost Pub Date : 2022-03-16 DOI:10.30686/1609-9192-2022-1s-100-104
A. Sashourin, V. Melnik
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Abstract

The article presents a historical overview of the development of Geomechanics as a science in the re-search school of the Institute of Mining of the Ural Branch of the Russian Academy of Sciences. A par-ticular attention is given to research into the stress-and-strain state of the rock mass and its changes in the course of operating the mining facilities, which plays a crucial role in securing the stability of struc-tures, mining safety, and prevention of major accidents. To ensure the safety of mining, a complex of research methods is used, including theoretical studies, physical and computer modeling, geophysical sensing of rock masses, ground-surface and satellite geodetic studies of the deformation processes. Geomechanical studies carried out at the Institute of Mining helped to gain new insights into the struc-ture of rock masses, variability of the stress-and-strain state, its mosaic structure as determined by the self-organization process within hierarchical block mass, to reveal the sources of emergencies and cat-astrophic events in mining. Current geomechanical research at the Institute is dedicated to the development of a scientific approach and execution of territory zoning using the criterion of technogenic and natural disasters in mining, studying regularities in the self-organization processes within the rock mass, development of technology to select favorable locations for hazardous and critical mining facili-ties. A special role is played by the prediction of possible changes in the stressandstrain state over time. The Geomechanics Department of the Institute of Mining uses field studies of the rock mass structure, geodetic studies of its mobility, remote sensing using satellite interferometry, and computer simulation of the properties and processes that take place within the rock mass.
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从“地基”立法定义看地质力学与地基利用的关系
本文介绍了地质力学作为一门科学在俄罗斯科学院乌拉尔分院采矿研究所研究学院发展的历史概况。重点研究矿山设施运行过程中岩体的应力应变状态及其变化,对保证结构的稳定、矿山安全、防止重大事故的发生起着至关重要的作用。为了确保采矿的安全,使用了一系列的研究方法,包括理论研究、物理和计算机建模、岩体的地球物理传感、变形过程的地面和卫星大地测量研究。在采矿研究所开展的地质力学研究有助于对岩体结构、应力应变状态的变异性、由分层块体内部自组织过程决定的镶嵌结构有新的认识,揭示了采矿中突发事件和巨灾事件的来源。目前,研究所的地质力学研究主要致力于利用采矿技术灾害和自然灾害的标准,发展科学的方法和实施领土分区,研究岩体内自组织过程的规律,开发技术,选择危险和关键采矿设施的有利位置。对应力应变状态随时间变化的预测起着特殊的作用。采矿研究所的地质力学部对岩体结构进行实地研究,对其流动性进行大地测量学研究,利用卫星干涉测量法进行遥感,并对岩体内部发生的性质和过程进行计算机模拟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Gornaya Promyshlennost
Gornaya Promyshlennost Engineering-Industrial and Manufacturing Engineering
CiteScore
1.10
自引率
0.00%
发文量
100
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