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首页> 外文期刊>Arabian Journal of Geosciences >A numerical simulation of landslide-prone slope in Himalayan region—a case study
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A numerical simulation of landslide-prone slope in Himalayan region—a case study

机译:喜马拉雅地区滑坡易发性边坡的数值模拟-一个案例研究

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Stability of slope will always a problem due to its geodynamic nature of Himalayan region. The area investigated belongs to the Lower Siwalik formation, which is prone to failure due to presence of various weak planes or structures present in the rock mass. Frequent landslides causing loss of life, property, disturbance of morphological, surface and subsurface water flow pattern. A huge landslide in the Amiyan area occurred in 1999 and blocked the Gaula River which caused loss of agricultural land and other properties as well as waterlogged upstream side. The debris of Amiyan slope contains soil and sandstones of various types. This article deals with instability analysis of slopes of the Amiyan area, near Kathgodam, Nainital, Uttarakhand. This area experiences a number of local as well as regional slides. Extensive field surveys have been carried out to understand the geological detail. Laboratory experiments have been conducted to determine the various physicomechanical properties of rock mass. These properties have been used as input parameters for the numerical simulation. A number of researchers have used two-dimensional numerical models to simulate the slide area. Three-dimensional slope stability studies provide a better understanding of the mechanism of failure as well as zone of influence. The computed deformations and stress distribution, along the failure surface, have been compared with the field measurements and found to be in good agreement with field observations. In this case, finite difference method has been applied on the stability analysis of Amiyan slope. The study indicates that the slope is vulnerable and needs proper protection.
机译:由于喜马拉雅地区的地球动力学性质,斜坡的稳定性将始终是一个问题。所调查的区域属于下西瓦里克地层,由于岩体中存在各种薄弱的平面或结构,该区域容易破裂。频繁发生的滑坡会造成生命,财产损失,形态,地表和地下水流形态的破坏。 1999年,阿米扬地区发生了巨大的滑坡,堵塞了高卢河,造成农业用地和其他财产的损失,以及上游的水淹。阿米扬斜坡的碎屑中含有各种类型的土壤和砂岩。本文主要研究北阿坎德邦奈尼塔尔加德哥达附近的阿米扬地区斜坡的不稳定性。该区域有许多本地和区域性幻灯片。为了了解地质细节,已经进行了广泛的现场调查。已经进行了实验室实验以确定岩体的各种物理力学性质。这些属性已用作数值模拟的输入参数。许多研究人员已经使用二维数值模型来模拟滑动区域。三维边坡稳定性研究提供了对破坏机理以及影响区域的更好理解。沿破坏面计算出的变形和应力分布已与现场测量结果进行了比较,发现与现场观察结果非常吻合。在这种情况下,有限差分法已经应用于阿米扬边坡的稳定性分析。研究表明,该斜坡很脆弱,需要适当的保护。

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