Pit Lake Slope Stability under Water Level Variations

E. Steiakakis, Georgios Syllignakis, Michail Galetakis, D. Vavadakis, Vincent Renaud, M. Al Heib, Jan Burda
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Abstract

This paper presents the results of a geotechnical investigation regarding the slope stability in a pit lake, emphasizing the impact of water level variations. Advanced analysis techniques were utilized for this study. The research was performed by using fully coupled flow-deformation analyses. For the fully coupled approach, Bishop’s effective-stress equation was used, and for the description of soil hydraulic behavior, the Van Genuchten’s model was applied. The analysis of slope stability associated with reservoir water level changes revealed that the slope tended to become unstable as the water level decreased; the stability factor was negatively related to the rate of water level reduction. Concerning the water level fluctuations, the analyses revealed that the soil mass seemed to become less stable as the rate of water level change increased. Under a specific range of rates of water level variation, the safety factor became higher as the number of fluctuations increased. Additionally, the simulation results concerning the water level rising indicate that the pressure due to the external water level acts on the slope surface with a positive impact on the stability factor. The results obtained reflect the effects under a specific site condition, but they can be used as a reference for evaluating slope stability in a pit lake design.
水位变化下的坑湖边坡稳定性
本文介绍了一项关于坑湖边坡稳定性的岩土工程勘测结果,强调了水位变化的影响。这项研究采用了先进的分析技术。研究采用了完全耦合的流动-变形分析方法。在全耦合方法中,使用了 Bishop 有效应力方程,在描述土壤水力行为时,使用了 Van Genuchten 模型。与水库水位变化相关的边坡稳定性分析表明,随着水位下降,边坡趋于不稳定;稳定系数与水位下降率呈负相关。关于水位波动,分析表明,随着水位变化率的增加,土体的稳定性似乎也在降低。在特定的水位变化率范围内,安全系数随着波动次数的增加而增大。此外,有关水位上升的模拟结果表明,外部水位造成的压力作用于斜坡表面,对稳定系数产生了积极影响。所获得的结果反映了特定场地条件下的影响,但可作为基坑湖泊设计中评估斜坡稳定性的参考。
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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