Analysis of Performance of High Liquid-limit-soil Foundation Reinforced by Geogrids
Guoxiong Wu, Jingsheng Ding, Juntang Liao, Xin Shujie
Abstract
Guoxiong Wu, Jingsheng Ding, Juntang Liao, Xin Shujie
Abstract
According to the features of high-liquid-limit foundation in southwest mountainous area and the characteristics of geogrid reinforced cushion, geogrid reinforced cushion was used to reinforce high-liquid foundation. By using the elastic-plastic finite element analysis method, the mechanisms of the geogrid reinforced cushion were studied. The results show that geogrid reinforced cushion can greatly reduce loading and deformation and improve the high-liquid foundation stability. In addition, the effect of factors such as location, layers, stiffness, etc. of geogrids on reinforcement and the regularity were discussed. Comparison of centrifugal model test result with numerical calculation result indicates that the error is negligible between them, which shows that (1) constitutive relationship, calculation model and calculation parameters are reasonable; (2) numerical simulation reflects deformation behavior of high-liquid foundation improvement effectively and the results of numerical analysis are reliable.
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According to the features of high-liquid-limit foundation in southwest mountainous area and the characteristics of geogrid reinforced cushion, geogrid reinforced cushion was used to reinforce high-liquid foundation. By using the elastic-plastic finite element analysis method, the mechanisms of the geogrid reinforced cushion were studied. The results show that geogrid reinforced cushion can greatly reduce loading and deformation and improve the high-liquid foundation stability. In addition, the effect of factors such as location, layers, stiffness, etc. of geogrids on reinforcement and the regularity were discussed. Comparison of centrifugal model test result with numerical calculation result indicates that the error is negligible between them, which shows that (1) constitutive relationship, calculation model and calculation parameters are reasonable; (2) numerical simulation reflects deformation behavior of high-liquid foundation improvement effectively and the results of numerical analysis are reliable.
Key concepts: Cushion, Geogrid, Foundation (evidence), Geotechnical engineering, Finite element method, Stiffness, Deformation (meteorology), Reinforcement