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首页> 外文期刊>Safety science >Stability analysis and comprehensive treatment methods of landslides under complex mining environment-A case study of Dahu landslide from Linbao Henan in China
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Stability analysis and comprehensive treatment methods of landslides under complex mining environment-A case study of Dahu landslide from Linbao Henan in China

机译:复杂采矿环境下滑坡的稳定性分析及综合治理方法-以河南临宝大湖滑坡为例

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摘要

A case study of Dahu landslide from Linbao Henan in China was discussed in this paper. Based on various kinds of basic data, the 3D numerical model of a geological structure which possesses all kinds of information including the mechanical characteristics and the geometrical parameters of geological discontinuities were known from previous works. Thus, both the whole geological structure and all kinds of geological components involved in a slope can be visualized on computer, the complicated analysis and calculation can be then carried out easily and effectively. Firstly, the combination of 3D numerical model with the limit equilibrium analysis theory in slope stabilization can easily provide the present stability factor. Then according to monitoring data of the total station, the potential sliding trends are analyzed if landslides do not occur. Secondly, there are a number of uncertainties on the factors of multi-forms of disaster, such as, rainfall, earthquake, and mined-out area. The unascertained mathematics theory is applied to the stability comprehensive evaluation. It shows four landslide bodies get to be at unstable state if there are some inducements. Thirdly, sliding distance and movement scope were predicted if landslides occur. On the basis of the analysis above, the treatment of the landslide body called isolated method of culvert was proposed. It has solved the contradiction of landslide and mining radically, and provides important technical assurance for safety and sustainable development of mine.
机译:本文以中国河南临宝的大湖滑坡为例进行了研究。基于各种基本数据,从先前的工作中已知具有各种信息的地质结构的3D数值模型,包括力学特征和地质不连续性的几何参数。这样,就可以在计算机上可视化整个斜坡的地质结构和各种地质组成部分,从而可以轻松,有效地进行复杂的分析和计算。首先,将3D数值模型与极限平衡分析理论相结合可以轻松地提供当前的稳定系数。然后根据全站仪的监测数据,分析了如果没有滑坡发生的潜在滑动趋势。其次,降雨,地震和采空区等多种灾害形式的因素存在许多不确定性。将不确定数学理论应用于稳定性综合评价。结果表明,如果有一定的诱因,四个滑坡体将处于不稳定状态。第三,预测了滑坡发生时的滑动距离和运动范围。在以上分析的基础上,提出了滑坡体的处理方法,称为涵洞隔离法。它从根本上解决了滑坡与采矿的矛盾,为矿山的安全与可持续发展提供了重要的技术保障。

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