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Assessment of stability of a Himalayan road cut slope with varying degrees of weathering: A finite-element-model-based approach

机译:利用不同程度的风化:基于有限元模型的喜马拉雅道路切割坡度的评估

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摘要

Slope stability assessment is essential for safe and sustainable development widely applied in mining, civil, and environmental engineering projects around the world. This study aimed to conduct a stability analysis of a selected Himalayan road cut slope from two different sections, named sections (A) and (B). The strength reduction factor (SRF) based on the finite element method was used to simulate the slope sections using Phase2 software. A mesh pattern of six node triangle elements was used during the numerical simulation. The Mohr-Coulomb parameters and other inputs used in the numerical modelling of the investigated slope were estimated by different geotechnical tests, namely, the direct shear test, density analysis test, rock hardness test, and Brazilian test. The results indicated that the critical SRF of the completely weathered slope profile section (A), with a relatively low overall angle, was found to be 1.25, which is approximately 50% lower than the value obtained in the moderately to highly weathered profile section (B), equal to 2.53. These results are in agreement with other published studies, which revealed that the geometry of a slope influences the weathering grade, which in turn destabilizes the slope. The results of this study will help in engineering slope design considering the influence of weathering.
机译:边坡稳定性评估对于全球采矿,民事和环境工程项目广泛应用于安全和可持续发展至关重要。本研究旨在从两个不同的部分,命名部分(A)和(B)的选定喜马拉雅道路切口斜坡进行稳定性分析。基于有限元方法的强度缩小因子(SRF)用于使用相位2软件模拟斜率部分。在数值模拟期间使用六个节点三角形元素的网格图案。通过不同的岩土性测试估算了MoHR-Coulomb参数和用于研究数值建模的输入,即直接剪切试验,密度分析试验,岩石硬度测试和巴西测试。结果表明,具有相对较低的总角度的完全风化的斜面剖面部分(A)的关键SRF为1.25,比在适度到高度风化的剖面部分中获得的值低约50%( b),等于2.53。这些结果与其他公布的研究一致,揭示了斜坡的几何形状影响着耐候等级,这反过来稳定斜坡。考虑到风化的影响,本研究的结果将有助于工程斜坡设计。

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