Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/118311
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Title: Fully coupled finite strain consolidation analysis for soft clay treated by prefabricated horizontal drain with vacuum and heat preloading
Authors: Liu, Y 
Li, A 
Wu, P 
Li, P 
Yin, JH 
Zheng, JJ
Issue Date: 2025
Source: Canadian geotechnical journal, 2025, v. 62
Abstract: This paper established a one-dimensional fully coupled finite strain consolidation analysis for soft clay treated by thermal prefabricated horizontal drain under vacuum and heat preloading with the consideration of thermal elastic viscoplastic (TEVP) behaviours of soft clay. First, the governing equations for finite strain consolidation, heat conduction, and heat convention process have been carefully derived based on the well-established Gibson’s finite strain consolidation theory and one-dimensional TEVP constitutive model. Secondly, the accuracy and reliability of the numerical method and good performance have been verified with a benchmark case and three physical model tests. Then, the improvement of consolidation efficiency rate was defined and used to study the effect of three variables on consolidation efficiency. Last but not least, a graphical user interface was provided to support researchers and engineers in utilizing the proposed numerical method for conducting consolidation analysis of soft soil treated in the same or similar fashion.
Keywords: Finite strain consolidation
Heating
Prefabricated horizontal drain
Soft soil
Vacuum
Publisher: Canadian Science Publishing
Journal: Canadian geotechnical journal 
ISSN: 0008-3674
EISSN: 1208-6010
DOI: 10.1139/cgj-2024-0222
Rights: © 2025 The Author(s). Permission for reuse (free in most cases) can be obtained from copyright.com.
This is the accepted version of the work. The final published article is available at https://doi.org/10.1139/cgj-2024-0222.
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