Performance Evaluation of Design Methods for Geosynthetic-Reinforced Pile-Supported Embankments

被引:14
|
作者
Izadifar, MohammadAli [1 ]
Luo, Ning [2 ]
Abu-Farsakh, Murad Y. Y. [2 ]
Chen, Shengli [1 ]
机构
[1] Louisiana State Univ, Dept Civil & Environm Engn, Baton Rouge, LA USA
[2] Louisiana State Univ, Louisiana Transportat Res Ctr, Baton Rouge, LA 70803 USA
关键词
infrastructure; geology and geoenvironmental engineering; geosynthetics; geosynthetic reinforcement; numerical modeling; SOIL; CLAY; 2D;
D O I
10.1177/03611981231165994
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Geosynthetic-reinforced pile-supported (GRPS) embankments are widely used in soft soil regions to support roadways. Various design methods for GRPS embankments have been developed; however, engineering experience and recent research have shown that the performance of these design methods varies case by case. This paper systematically evaluates the performance of several empirical GRPS embankment design methods, which include the BS8006 method, the Nordic method, the EBGEO method, the FHWA method, and the CUR226 method. A preliminary assessment of these methods using three field case studies confirms that their performances differ from each other and from field measurements, the differences sometimes being quite significant. To enable a more systematic evaluation of the design methods, a validated finite element model (FEM) was first used to conduct a comprehensive parametric study considering typical soft soil conditions and various geometrical parameters, the results of which served as a baseline for the evaluation of the design methods. The efficacy, stress concentration ratio, maximum differential settlement, and maximum reinforcement tension were used as indicators for the method evaluation. The results show that, overall, the CUR226 method outperforms other design methods. The percentage difference between the CUR226 method and FEM can be as small as 5%, and the maximum value is 130%. It was also found that the Nordic method does not apply to small embankment heights, and that the BS8006 method provides a large overestimation of reinforcement tension when pile spacing is large (>4 ft) for all embankment heights considered.
引用
收藏
页码:458 / 475
页数:18
相关论文
共 50 条
  • [1] Mechanical Performance of Geosynthetic-Reinforced Pile-Supported Embankments
    Sun, Ling
    Zheng, Jun-Jie
    Zhang, Jun
    Ma, Qiang
    [J]. ADVANCED MANUFACTURING TECHNOLOGY, PTS 1, 2, 2011, 156-157 : 1696 - 1701
  • [2] Review of existing design methods for geosynthetic-reinforced pile-supported embankments
    Ariyarathne, Priyanath
    Liyanapathirana, D. S.
    [J]. SOILS AND FOUNDATIONS, 2015, 55 (01) : 17 - 34
  • [3] Comparison and evaluation of analytical models for the design of geosynthetic-reinforced and pile-supported embankments
    Pham, Tuan A.
    Dias, Daniel
    [J]. GEOTEXTILES AND GEOMEMBRANES, 2021, 49 (03) : 528 - 549
  • [4] Probabilistic analysis of geosynthetic-reinforced and pile-supported embankments
    Guo, Xiangfeng
    Pham, Tuan A.
    Dias, Daniel
    [J]. COMPUTERS AND GEOTECHNICS, 2022, 142
  • [5] Geosynthetic-reinforced pile-supported embankments: state of the art
    van Eekelen, S. J. M.
    Han, J.
    [J]. GEOSYNTHETICS INTERNATIONAL, 2020, 27 (02) : 112 - 141
  • [6] Proposed Method for the Design of Geosynthetic-Reinforced Pile-Supported (GRPS) Embankments
    Alsirawan, Rashad
    Koch, Edina
    Alnmr, Ammar
    [J]. SUSTAINABILITY, 2023, 15 (07)
  • [7] Evaluating the mechanisms and performance of Geosynthetic-Reinforced Load Transfer Platform of pile-supported embankments design methods
    Nobahar, M.
    Abu-Farsakh, M. Y.
    Izadifar, M.
    [J]. GEOTEXTILES AND GEOMEMBRANES, 2024, 52 (06) : 1112 - 1133
  • [8] Centrifuge Modeling Investigation of Geosynthetic-Reinforced and Pile-Supported Embankments
    Jiang, Yanbin
    Li, Shi-Tong
    He, Ning
    Xu, Binhua
    Fan, Wenhu
    [J]. INTERNATIONAL JOURNAL OF GEOMECHANICS, 2024, 24 (08)
  • [9] Analysis of Load Transfer in Geosynthetic-Reinforced Pile-Supported Embankments
    Yan, Muhan
    Song, Xuguo
    Xiao, Hong
    Guo, Shuaijie
    Zhang, Haiyang
    Chango, Ishola Valere Loic
    [J]. 2022 16TH IEEE INTERNATIONAL CONFERENCE ON SIGNAL PROCESSING (ICSP2022), VOL 1, 2022, : 354 - 358
  • [10] Discrete element analysis of geosynthetic-reinforced pile-supported embankments
    Wang, Kangyu
    Cao, Jun
    Ye, Jiahuan
    Qiu, Ziliang
    Wang, Xinquan
    [J]. Construction and Building Materials, 2024, 449