Winkler spring stiffness distribution for the structural analysis of mat foundations in clay under drained conditions

Abstract The interaction between mat foundations and the supporting soil is often simplified in design practice by assuming that the mat rests on Winkler springs. Most of previous studies aimed at determining the spatial variation of the spring constants or the modulus of subgrade reaction that is needed to obtain realistic and accurate results regarding the bending of the mat assuming that the soil behaves as a purely linear elastic material. This paper investigates the effects of plastic strains and volume changes that happen due to the consolidation of clayey soils under long-term conditions on the distribution of the equivalent spring constants and the bending moment diagrams. For this purpose, three-dimensional finite element analyses are performed for fully drained conditions with the soil simulated using the Modified Cam-Clay constitutive model. The results show that the presence of plastic yielding significantly influences the mat-soil interaction and the assumption of a linear elastic soil overpredicts the soil stiffness and the bending moments in the mat foundation. The semi-analytical Discrete Area Method could be adopted to obtain comparable results to those generated by elastoplastic finite element analysis.

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Publication Details

Journal
International Journal of Geo-Engineering
Published
2026-09-06
DOI
https://doi.org/10.1186/s40703-026-00282-8
Primary Topic
Geotechnical Engineering and Analysis
Type
article
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Winkler spring stiffness distribution for the structural analysis of mat foundations in clay under drained conditions

Dimitrios Loukidis, Grace Abou-Jaoude
International Journal of Geo-Engineering
Geotechnical Engineering and Analysis
article

Winkler spring stiffness distribution for the structural analysis of mat foundations in clay under drained conditions

Dimitrios Loukidis, Grace Abou-Jaoude
article en

Abstract

Abstract The interaction between mat foundations and the supporting soil is often simplified in design practice by assuming that the mat rests on Winkler springs. Most of previous studies aimed at determining the spatial variation of the spring constants or the modulus of subgrade reaction that is needed to obtain realistic and accurate results regarding the bending of the mat assuming that the soil behaves as a purely linear elastic material. This paper investigates the effects of plastic strains and volume changes that happen due to the consolidation of clayey soils under long-term conditions on the distribution of the equivalent spring constants and the bending moment diagrams. For this purpose, three-dimensional finite element analyses are performed for fully drained conditions with the soil simulated using the Modified Cam-Clay constitutive model. The results show that the presence of plastic yielding significantly influences the mat-soil interaction and the assumption of a linear elastic soil overpredicts the soil stiffness and the bending moments in the mat foundation. The semi-analytical Discrete Area Method could be adopted to obtain comparable results to those generated by elastoplastic finite element analysis.

International Journal of Geo-EngineeringVol. 17(1)
University of Cyprus (CY), Lebanese American University (LB)
Openalex Percentile: Top 100%
Geotechnical Engineering and Analysis
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Winkler spring stiffness distribution for the structural analysis of mat foundations in clay under drained conditions — Dimitrios Loukidis, Grace Abou-Jaoude · International Journal of Geo-Engineering (2026) | TGRS Research Map | TGRS