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岩溶塌陷影响下加筋路基承载机理研究 被引量:5

Mechanisms of Load Transfer in Geosynthetic-reinforced Embankments Subjected to Localised Karst Collapse
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摘要 在可能发生岩溶塌陷的地区建造路堤,可采用在路堤底部铺设土工合成材料加筋垫层的方法加固路基,防止岩溶突然坍塌造成路堤塌陷。采用PLAXIS3D软件,运用更新网格的大变形有限元分析方法,研究加筋路基在岩溶塌陷影响下路堤和筋材位移、应力场分布规律及加筋路基的承载机理,分析了岩溶塌陷尺寸、路堤填土高度、筋材抗拉刚度和路堤填土性质对地表最大沉降和最大拉力的影响。结果表明,地表最大沉降与路堤中是否形成封闭的应力穹顶密切相关,封闭的应力穹顶高度主要受塌陷尺寸和路堤填土黏聚力影响;筋材抗拉刚度、路堤高度和路堤填土内摩擦角对封闭的应力穹顶高度影响较小;筋材横纵向最大拉力按筋材横纵向抗拉刚度比例分配,单向与双向加筋差别不大。 Geosynthetics could be used for reinforcing embankment subjected to the influence of potential localised karst collapse. In this paper,the displacements and stresses in both embankment and geosynthetics,and the bearing mechanism of geosynthetic-reinforced embankment are analyzed in detail based on the numerical simulation results from PLAXIS3 Dsoftware by using large deformation analysis method with updated mesh function. Moreover,the influences of design parameters( including size of karst collapse,embankment height,geosynthetic's tensile stiffness and properties of embankment soil) on the maximum settlements of embankment and the maximum tensions of geosynthetics are investigated. Results indicate that the maximum settlement of embankment is depended on whether a closed stress dome in embankment is formed,and the height of the stress dome is mainly related to the size of collapse and the cohesion of embankment soil. Geosynthetic's tensile stiffness,embankment height,and internal friction angle of embankment fill have slight influence on the height of stress dome. The maximum longitudinal and transverse tensions of geosynthetics are related to the longitudinal and transverse stiffness of geosynthetics,and the differences of both maximum pavement settlement and strain in geosynthetics caused from uniaxial and biaxial geogrids are small.
出处 《长江科学院院报》 CSCD 北大核心 2017年第2期56-62,共7页 Journal of Changjiang River Scientific Research Institute
基金 国家自然科学基金项目(41572253) 高等学校博士学科点专项科研基金博导类资助课题项目(20133514110004)
关键词 岩溶塌陷 加筋路基 承载机理 数值分析 土拱效应 localised karst collapse geosynthetic-reinforced embankment bearing mechanism numerical analysis soil arching effect
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  • 1Russell D,Pierpoint N.An Assessment of Design Methods for Piled Embankments[J].Ground Engineering,1997,30(11):39-44. 被引量:1
  • 2Han J,Gabr M A.Numerical Analysis of Geosynthetic-reinforced and Pile-supported Earth Platforms over Soft Soil[J].J.of Geotechnical and Geoenvironmental Engineering,2002,128(1),44-53. 被引量:1
  • 3Rutugandha Gangakhedkar.Geosynthetic Reinforced Pile supported Embankments[D].Fort Lauderdale:University of Florida,2004. 被引量:1
  • 4Cortlever I N G,Gutter H H.Design of Double Track Railway Bidor-Rawang on AuGeo Piling System according to BS8006 and PLAXIS Numerical Analysis[R/OL].Amsterdam:Cofra,2002[2005].Http://www.cofra.com/papers/KL2002Augeo.pdf. 被引量:1
  • 5Brinkgreve R B J.PLAXIS–finite Element Code for Soil and Rock Analyses,2D-Version 8[M].Rotterdam:Balkema A A,2002. 被引量:1
  • 6Terzaghi K.Theoretical soil mechanics[M].New York:John Wiley & Son,1943. 被引量:1
  • 7刘嘉平.岩溶区地面塌陷成因的新解析[J].水文地质工程地质,1991,18(6):29-32. 被引量:7
  • 8张建勋,陈福全,简洪钰.被动桩中土拱效应问题的数值分析[J].岩土力学,2004,25(2):174-178. 被引量:131

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