Analysis of the Seismic Effect of Slopes with Different Shapes Under Dynamic Loads

被引:0
|
作者
Gui-Lin Wang
Liang Zhang
Zhi-Wen Huang
Bo-Long Liu
Pei-Yong Qiu
机构
[1] Ministry of Education,Key Laboratory of New Technology for Construction of Cities in Mountain Area (Chongqing University)
[2] Chongqing University,School of Civil Engineering
[3] Research Institute on Mines and the Environment (RIME UQAT-Polytechnique),Department of Civil, Geological and Mining Engineering, Ecole Polytechnique de Montreal
关键词
Concave and convex slope; Seismic effect; Shaking table test; Numerical simulation; Finite difference method;
D O I
暂无
中图分类号
学科分类号
摘要
In geological engineering, it is often found that slopes deform during the earthquake. Eventually, landslide may take place and cause much loss of life and property. So research on the responses of slopes under dynamic loads is crucial. In this research, a series of small shaking table model tests are adopted to study the responses of slopes with the shape of straight, concave, and convex under dynamic loads. What’s more, comparative analyses between the shaking table model tests and numerical simulations of the slope responses are conducted to verify the reliability of test results. The results show that the slope shape has a strong influence on the seismic stability of the slope. In detail, the convex slope is more easily to destroy while the concave slope is the most stable under the dynamic loads; due to tensile cracks developed in the slope top, slopes fail more easily under transverse vibration than longitudinal vibration; in addition, the dynamic stability of the slope decreases with increasing slope angle. It is also found that the slope failure modes drawn from numerical are in great agreement with that in the model tests, the accuracy of test results is validated. The research provide a reference for the seismic design of slopes with different shapes.
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页码:1779 / 1791
页数:12
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