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高速公路拓宽路基病害机理及防治
引用本文:张春会,吕锦,赵全胜,王锡朝. 高速公路拓宽路基病害机理及防治[J]. 辽宁工程技术大学学报(自然科学版), 2012, 0(2): 168-171
作者姓名:张春会  吕锦  赵全胜  王锡朝
作者单位:河北科技大学建筑工程学院,河北石家庄050018
基金项目:河北省自然基金资助项目(E2011208036;11215634);河北省交通科技重点资助项目(Y-2009122)
摘    要:为了分析高速公路拓宽路基病害机理,以京石高速公路拓宽为工程背景,在FLAC环境下利用Fish函数方法建立了高速公路路基拓宽的数值分析模型,研究了地基沉降对拓宽路基内竖向应力、水平应力和剪切应力的影响,结果表明:在路基拓宽中路基顶部拼接处首先出现拉应力,随着地基沉降的发展,路基顶部拼接处的拉应力区不断发展,并引起路基和路面出现纵向开裂;由于拓宽路基填筑高度不同,路基竖向附加应力分布不均,从而使得路基横向出现不均匀沉降;剪应力主要集中在拓宽路基中部,对拓宽路基病害贡献不大.最后提出了拓宽路基病害防治措施.

关 键 词:FLAC  数值分析  高速公路拓宽  拉应力  病害机理  防治措施  剪切应力  不均匀沉降

Damage mechanism and prevention of widened embankment
ZHANG Chunhui,LV Jin,ZHAO Guanshu,ZHAO Quansheng,WANG Xizhao. Damage mechanism and prevention of widened embankment[J]. Journal of Liaoning Technical University (Natural Science Edition), 2012, 0(2): 168-171
Authors:ZHANG Chunhui  LV Jin  ZHAO Guanshu  ZHAO Quansheng  WANG Xizhao
Affiliation:(School of Civil Engineering,Hebei University of Science and Technology,Shijiazhuang 050018,China)
Abstract:To analyze the damage mechanism of widened embankments,based on a case of widened Jingshi highway,Fish function in FLAC was used to establish the numerical model of the widened highway embankment in this study.Also,the effects of foundation settlement on the vertical stress,horizontal stress and shear stress in the widened roadbed were investigated.The results show that: tensile stress initially occurs at the top of the widened roadbed.With the development of foundation settlement,the tensile stress zone is also extended and results in the longitudinal cracks in the embankment and pavement;due to different filling height,the uneven vertical additional stress distribution occurs,which causes the transverse differential settlement for the subgrade;concentrated shear stress appears in the middle of the widened embankment,which has little effect on the widened roadbed.The prevention measures for the widened embankment damage are presented.
Keywords:FLAC  numerical analysis  highway widening  tensile stress  damage mechanism  prevention measures  shear stress  differential settlement
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