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Evaluation of the Static and Pseudo-static Stability and Effectiveness of an Improvement Technique for Slopes of the Vanyar Dam Reservoir

机译:静态和伪静态稳定性评价瓦数坝储层斜坡改进技术的效力

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摘要

Excavation on the inclined surfaces on the dam reservoir and rising water level may also affect the slope stability of the inclined surfaces in the dam reservoir under static and dynamic conditions. In this study, it is aimed to present a three-dimensional (3D) model to analyze slope stability of access road to the dam's crest and calculates the value of FOS in process of instructing and exploitation of dam and estimating the possibility of landslide occurrence during excavations and impounding of the dam. To this end, analysis of the slope stability has been implemented based on the information obtained from the field inspections, investigations, geological surveys, manual and mechanical borings in laboratory and field experiments. For acquiring the value of factor of safety (FOS), an explicit-finite-difference code is implemented. Effects of excavations in different levels of slope and fluctuation of water table in instability of the slope have been analyzed. The outcomes reveal that through increasing the level of water, FOS is decreased and large amounts of soil were entered in the dam's reservoir, blocking the entrance of the drainage valve and disrupt access way to the dam crest. Therefore, piles in the different distance have been used for controlling the slope stability and the best distribution of piles based on acceptable values for factor of safety in different regulations have been determined. It was observed that the excavation on the slope and increment of the water level in the dam reservoir influence the slope stability.
机译:在坝储存器和上升水位上的倾斜表面上的挖掘也可能在静态和动态条件下影响坝储存器中倾斜表面的斜率稳定性。在这项研究中,旨在介绍三维(3D)模型,以分析通往大坝的山脉的坡度稳定性,并计算大坝的指导和开发过程中FOS的价值,并估算滑坡发生的可能性大坝的挖掘和扣除。为此,基于从实验室和现场实验中的现场检查,调查,地质调查,手动和机械钻料获得的信息来实现坡度稳定性的分析。为了获取安全因子(FOS)的值,实现了显式有限差分代码。分析了斜坡不同水平坡度坡度的影响,斜坡不稳定性下降。结果表明,通过增加水平,FOS减少,在大坝水库中进入大量土壤,阻挡了排水阀的入口并扰乱了坝嵴的进入方式。因此,已经确定了不同距离中的桩,用于控制边坡稳定性,并确定基于不同规则的安全因素的可接受值的桩的最佳分布。观察到,坝储存器中水位坡度的开挖和增量影响了坡度稳定性。

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