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含倾斜强风化带及局部边坡复杂场地的动力响应及破坏模式研究
引用本文:曹礼聪,张建经,刘飞成,刘 阳,吴金标,王志佳.含倾斜强风化带及局部边坡复杂场地的动力响应及破坏模式研究[J].岩石力学与工程学报,2017,36(9):2238-2250.
作者姓名:曹礼聪  张建经  刘飞成  刘 阳  吴金标  王志佳
作者单位:(1. 西南交通大学 土木工程学院岩土工程系,四川 成都 610031;2. 海南大学 土木建筑工程学院土木工程系,海南 海口 570228)
摘    要: 基于大型振动台模型试验,研究了含倾斜强风化带及局部边坡场地在地震波作用下的动力响应特征,同时结合边际谱理论分析、土层内部应变和边坡位移规律,探究了场地内部的损伤发展过程。试验结果表明:模型加载El Centro地震波时,基岩和基覆内加速度放大系数随高程增加而增大,当加载地震波幅值大于0.33 g时,输入幅值越大,加速度放大越小;强风化带处加速度峰值削弱明显,加载幅值越大,削弱程度越大。模型加载3 Hz正弦波时,边际谱能量识别显示场地损伤从平台与局部边坡拐角下的强风化带开始,此后局部边坡底部强风化和平台中部下的强风化带出现损伤,平台与局部边坡拐角处强风化带的损伤逐渐与顶部损伤贯通;土层应变、坡面位移规律印证了场地损伤的发展过程;由破坏现象、边际谱损伤发展分析、土层应变及边坡位移规律可知,该含倾斜强风化带场地的破坏模式表现为拉裂–剪切–滑移以及拉裂–剪切–破碎2种破坏模式。

关 键 词:边坡工程复杂场地倾斜强风化带振动台试验动力响应边际谱损伤识别

Dynamic response and failure mode of the complex site with tilting strongly weathered layer and local slopes#br#
CAO Licong,ZHANG Jianjing,LIU Feicheng,LIU Yang,WU Jinbiao,WANG Zhijia.Dynamic response and failure mode of the complex site with tilting strongly weathered layer and local slopes#br#[J].Chinese Journal of Rock Mechanics and Engineering,2017,36(9):2238-2250.
Authors:CAO Licong  ZHANG Jianjing  LIU Feicheng  LIU Yang  WU Jinbiao  WANG Zhijia
Affiliation:(1. Department of Geotechnical Engineering,School of Civil Engineering,Southwest Jiaotong University,Chengdu,Sichuan 610031,China;2. Department of Civil Engineering,School of Civil Engineering and Architecture,Hainan University,Haikou,Hainan 570228,China);
Abstract:The article researched the dynamic response of complex site with tilting strongly weathered layer and local slope with a large-scale shaking table model test. The damage progress of the site was studied through the analysis of marginal spectrum,the strain variations of the soil and the displacement of the slope surface. When the El Centro wave is loaded,the amplification coefficients of acceleration at the points in the bedrock and cover layer increase with increasing of elevation. The amplification coefficients of acceleration decrease with the increasing of amplitude(>0.33 g). The accelerations at the point in the strongly weathered layer decrease sharply and decrease more with the increasing of earthquake amplitude. When the 3 Hz sine waves are loaded,the energy identification of the marginal spectrum implies that the destruction of the site starts from the strongly weathered layer at the corner of local slopes. Then there appears damage in the strongly weathered layer at the bottom of local slopes and the middle of the site. The destruction of the strongly weathered layer at the corner of local slopes connects gradually with the damage at top. The damage progress is verified by the strain changes in the soil and the displacement changes on the slope surface. The failure modes of the site are cracking-shearing-slippage and cracking-shearing-crushing.
Keywords:slope engineering  complex site  tilting strongly weathered layer  shaking table test  dynamic response  marginal spectrum  damage identification  
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