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Three-Dimensional Numerical Investigation on the Efficiency of Subsurface Drainage for Large-Scale Landslides

机译:大型滑坡地下排水效率的三维数值研究

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摘要

This paper presents a field monitoring study with emphasis on the design and construction of a subsurface drainage system and evaluation of its stabilization efficiency on the slope of You-Ye-Lin landslide using a three-dimensional finite element method program (Plaxis 3D) for the groundwater flow and slope stability analyses. The subsurface drainage system consists of two 4-m diameter drainage wells with multi-level horizontal drains and was installed to draw down the groundwater level and stabilize the unstable slope of the landslide. Results demonstrate that the subsurface drainage system is functional and capable of accelerating the drainage of the infiltrated rainwater during torrential rainfalls during the typhoon season. The large groundwater drawdown by the subsurface drainage system protects the slopes from further deterioration and maintains the slope stability at an acceptable and satisfactory level.
机译:本文介绍了一种现场监测研究,重点是对地下排水系统的设计和构建,以及使用三维有限元方法(PLAXIS 3D)对ye-Lin滑坡对您的稳定效率的评估地下水流量和边坡稳定性分析。地下排水系统由两个4米直径的排水井组成,具有多级水平排水沟,并安装以抑制地下水位并稳定滑坡的不稳定斜率。结果表明,地下排水系统是功能性的,能够在台风季节期间加速渗透雨水的排水。地下排水系统的大型地下水缩小保护斜率从进一步劣化,并以可接受和令人满意的水平保持斜坡稳定性。

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