地震作用下土坡响应数值模拟的远程边界

IF 0.8 4区 工程技术 Q4 ENGINEERING, GEOLOGICAL Soil Mechanics and Foundation Engineering Pub Date : 2023-12-04 DOI:10.1007/s11204-023-09915-x
J. W. Zhang, T. Y. Wang, H. G. Wu, Y. Yuan, A. H. Zhou
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引用次数: 0

摘要

边界条件的选择影响土质边坡地震反应数值模拟的精度。我们使用了一个有限元模型、地面运动的现场记录和两套广义的边坡模型来检查边坡动力学,并确定了边坡模型的前缘和后缘的最佳尺寸。为了避免模型边界反射的地震波叠加,我们的研究结果表明,模型前缘的长度应超过2倍坡高,后缘的长度应超过4倍坡高。这些尺寸保证了仿真结果的准确性。粘弹性边界边坡的地震安全系数与远程固定边界边坡的地震安全系数相差0.02,验证了远程固定边界在边坡地震稳定性分析中的适用性。
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Remote Boundary for Numerical Simulations of Soil Slope Response to Earthquakes

Accuracy of numerical simulations of seismic response of soil slopes is influenced by the choice of boundary conditions. We used a finite element model, field records of ground motion, and two sets of generalized slope models to examine slope dynamics and identify optimal dimensions for the leading and trailing edges of slope models. To avoid superposition of seismic waves reflected by model boundaries, our results show that the length of the leading edge of the model should exceed two times slope height and the length of the trailing edge should exceed four times slope height. These dimensions would ensure the accuracy of simulation results. The difference between the seismic safety factor for a slope with viscoelastic boundaries and that for a slope with remote fixed boundaries is 0.02, which validates the applicability of remote fixed boundaries to analyses of slope seismic stability.

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来源期刊
CiteScore
1.50
自引率
12.50%
发文量
65
审稿时长
6 months
期刊介绍: Soil Mechanics and Foundation Engineering provides the Western engineer with a look at Russian advances in heavy construction techniques. Detailed contributions by experienced civil engineers offer insights into current difficulties in the field, applicable innovative solutions, and recently developed guidelines for soil analysis and foundation design.
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