Study on Dynamic Characteristics of Loess Slope Reinforced by Prestressed Anchor Cables Under Earthquake

Wang Xiaolin, Xue Ying
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引用次数: 1

Abstract

As a commonly used method to reinforce slopes, prestressed anchor cables can effectively prevent slope instability. To study the dynamic response characteristics of loess slopes reinforced with prestressed anchor cables under earthquake action. Taking a slope in Yan'an as an example, using MIDAS/GTS numerical simulation, a model of loess slope reinforced by prestressed anchor cables under earthquake action is established, and the dynamics are analyzed in terms of slope displacement, horizontal and vertical velocity, maximum principal stress, and anchor cable axial force. Based on the response characteristics, the influence of peak seismic acceleration and ground motion duration on the stability of loess slopes is analyzed. The results show that under the action of an earthquake, the range of displacement and velocity of the slope surface is larger than that of the inside of the slope, and the slope surface is more prone to instability. The seismic wave has little effect on the axial force of the anchor cable at the same elevation. The displacement of the slope increases with the increase of the seismic peak acceleration, and the input peak acceleration is every time With an increase of 0.1g, the deformation at the slope surface S5 increases by 0.014m, and the slope displacement changes significantly with the change of the duration of the ground motion, increasing continuously.
地震作用下预应力锚索加固黄土边坡动力特性研究
预应力锚索作为一种常用的边坡加固方法,可以有效地防止边坡失稳。研究地震作用下预应力锚索加固黄土边坡的动力响应特性。以延安某边坡为例,利用MIDAS/GTS数值模拟,建立了地震作用下预应力锚索加固黄土边坡的模型,并从边坡位移、水平和垂直速度、最大主应力、锚索轴向力等方面进行了动力学分析。在此基础上,分析了地震峰值加速度和地震动持续时间对黄土边坡稳定性的影响。结果表明,在地震作用下,边坡表面的位移和速度变化幅度大于边坡内部,边坡表面更容易发生失稳。地震波对同一标高锚索的轴力影响不大。边坡位移随地震峰值加速度的增加而增大,输入峰值加速度为每增加0.1g,坡面S5变形增加0.014m,且边坡位移随地震动持续时间的变化变化明显,不断增大。
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