Research into stress-strain state of the mass under open pit with a change in the open-pit bottom width

IF 2.8 Q2 MINING & MINERAL PROCESSING Mining of Mineral Deposits Pub Date : 2022-09-30 DOI:10.33271/mining16.03.061
A. Imashev, A. Suimbayeva, Gaukhar Zhunusbekova, Sh.B. Zeitinova, A. Kuttybayev, Aibek Mussin
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引用次数: 6

Abstract

Purpose. Studying the stress-strain state of the rock mass under the open pit, taking into account the change in the open-pit bottom width in order to reveal the geomechanical state and determine the safe parameters of the rock bridge. Methods. The peculiarities of the stress-strain state formation in the transition zone have been studied according to the methodology using numerical research methods and taking into account the geological strength index (GSI). Using this index, it is possible to take into account rock fracturing, water cut, lithology and other strength indicators, due to which there is a correct transition from the rock sample strength to the mass strength. Findings. Based on the numerical modeling results, it has been determined that an increase in the open-pit bottom width leads to a decrease in the zone of tensile stresses concentration in the arch pillar of the stope block. This, in turn, has a positive effect on the rock bridge stability, that is, the probability of the rock bridge collapse does not increase with an increase in the width of the open-pit bottom. Originality. For the first time, the dependence has been obtained of the horizontal stresses σ3 distribution at the stages of the open-pit bottom expansion at the Akzhal Zinc-Lead Mine. This makes it possible to realistically predict changes in the geomechanical state of the rock bridge depending on the width of the open-pit bottom. Practical implications. When predicting the change in the stress-strain state in the transition zone and determining the rock bridge safe parameters, it is possible to reduce the probability of their destruction and make timely management decisions on safe conditions for mining the reserves.
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随露天矿底宽变化,露天矿下岩体应力-应变状态研究
意图研究露天矿下岩体的应力-应变状态,考虑露天矿底部宽度的变化,以揭示地质力学状态,确定岩桥的安全参数。方法。根据数值研究方法,并考虑地质强度指数,研究了过渡带应力-应变状态形成的特点。使用该指数,可以考虑岩石破裂、含水率、岩性和其他强度指标,因此可以正确地从岩石样本强度过渡到岩体强度。调查结果。根据数值模拟结果,确定了露天矿底部宽度的增加导致采场块体拱柱中拉应力集中区的减小。这反过来又对岩桥的稳定性产生了积极影响,即岩桥坍塌的概率不会随着露天坑底宽度的增加而增加。独创性首次获得了Akzhal锌铅矿露天矿扩底阶段水平应力σ3分布的相关性。这使得可以根据露天坑底的宽度实际预测岩桥的地质力学状态的变化。实际意义。在预测过渡带应力-应变状态的变化并确定岩桥安全参数时,可以降低其破坏的概率,并及时对开采储量的安全条件做出管理决策。
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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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