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考虑土体抗拉强度的边坡永久位移极限分析
引用本文:刘炎,张迎宾,何毅,夏逍,王新宇.考虑土体抗拉强度的边坡永久位移极限分析[J].地质力学学报,2018,24(6):855-862.
作者姓名:刘炎  张迎宾  何毅  夏逍  王新宇
作者单位:1.西南交通大学交通隧道工程教育部重点实验室, 四川 成都 610031
基金项目:国家自然科学基金(51608454,51609204);中央高校基金(2682015CX092,2682016CX084)
摘    要:通过野外观测与室内试验发现,边坡后缘往往存在拉应力区。拉应力区的存在会影响边坡的稳定性,而地震荷载的存在会放大这种影响。分析拉应力区对边坡稳定性的影响,当前主要采用的方式为:对强度准则中抗拉强度进行折减(即张拉截断)。文章通过极限分析上限原理和拟静力法,推导出边坡临界加速度计算方程。以边坡在不同参数组合下的位移系数为基础,输入实测地震波,采用改进的Newmark法对边坡进行位移分析。文章算例的结果表明:拉应力区的存在会大大降低边坡临界加速度,土体在完全张拉截断下的临界加速度对边坡可能会产生超过50%的折减。拉应力区的存在也可以使永久位移达到传统的摩尔库伦理论计算值的2倍之多。文中所有的结果皆以图表形式展示,非常便于理解以及读取数据。 

关 键 词:地震荷载    张拉截断    极限分析    临界加速度    永久位移
收稿时间:2018/8/15 0:00:00
修稿时间:2018/10/8 0:00:00

LIMIT ANALYSIS OF PERMANENT DISPLACEMENT FOR SLOPE CONSIDERING THE TENSILE STRENGTH OF SOIL
LIU Yan,ZHANG Yingbin,HE Yi,XIA Xiao and WANG Xinyu.LIMIT ANALYSIS OF PERMANENT DISPLACEMENT FOR SLOPE CONSIDERING THE TENSILE STRENGTH OF SOIL[J].Journal of Geomechanics,2018,24(6):855-862.
Authors:LIU Yan  ZHANG Yingbin  HE Yi  XIA Xiao and WANG Xinyu
Institution:1.Key Laboratory of Transportation Tunnel Engineering, Ministry of Education, Southwest Jiaotong University, Chengdu 610031, Sichuan, China2.Faculty of Geosciences and Environmental Engineering, Southwest Jiaotong University, Chengdu 610031, Sichuan, China
Abstract:Through field observation and laboratory experiment, it is found that the stability of the slope is influenced by the existence of tensile stress zone in the back edge of the slope, while the influence is amplified by the existence of seismic load. To analyze the impact of tensile stress zone on the stability of slope, the main method used at present is to reduce the tensile strength in the strength criterion (i.e., tension cut-off). According to the upper limit principle of limit analysis and the quasi-static method, the calculation equation of the critical acceleration of the slope is derived. Based on the displacement coefficients of the slope under different parameter combinations, the measured seismic wave was input and the improved Newmark method was used to analyze the displacement of the slope. The results show that the critical acceleration of the slope can be greatly reduced by the existence of the tensile stress area, and the critical acceleration of the soil mass under the complete tension cut-off may produce more than 50% reduction of the slope. The existence of the tensile stress zone can also make the permanent displacement as much as twice the value calculated by the traditional Mohr-Coulomb yield criterion. All of the results in this article are presented in graphical form, which is very easy to understand and read.
Keywords:seismic load  limit analysis  tension cut-off  critical acceleration  permanent displacement
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