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Experimental and Numerical Study of a Cone-Top Pile Foundation for Challenging Geotechnical Conditions

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dc.contributor.author Zhussupbekov, Askar
dc.contributor.author Sarsembayeva, Assel
dc.contributor.author Bazarov, Baurzhan
dc.contributor.author Omarov, Abdulla
dc.date.accessioned 2026-03-11T07:49:20Z
dc.date.available 2026-03-11T07:49:20Z
dc.date.issued 2025
dc.identifier.citation Zhussupbekov, A.; Sarsembayeva, A.; Bazarov, B.; Omarov, A. Experimental and Numerical Study of a Cone-Top Pile Foundation for Challenging Geotechnical Conditions. Appl. Sci. 2025, 15, 7893. https://doi.org/ 10.3390/app15147893 ru
dc.identifier.issn 2076-3417
dc.identifier.other doi.org/ 10.3390/app15147893
dc.identifier.uri http://repository.enu.kz/handle/enu/30105
dc.description.abstract This study investigates the behavior and performance of a newly proposed cone-top pile foundation designed to improve stability in layered, deformable, or strain-sensitive soils. Traditional shallow and uniform conical foundations often suffer from excessive settlement and reduced capacity when subjected to vertical loads and horizontal soil deformations. To address these limitations, a hybrid foundation was developed that integrates an inverted conical base with a central pile shaft and a rolling joint interface between the foundation and the superstructure. Laboratory model tests, full-scale field loading experiments, and axisymmetric numerical simulations using Plaxis 2D (Version 8.2) were conducted to evaluate the foundation’s bearing capacity, settlement behavior, and load transfer mechanisms. Results showed that the cone-top pile foundation exhibited lower settlements and higher load resistance than columnar foundations under similar loading conditions, particularly in the presence of horizontal tensile strains. The load was effectively distributed through the conical base and transferred into deeper soil layers via the pile shaft, while the rolling joint reduced stress transmission to the structure. The findings support the use of cone-top pile foundations in soft soils, seismic areas and areas affected by underground mining, where conventional designs may be inadequate. This study provides a validated and practical design alternative for challenging geotechnical environments. ru
dc.language.iso en ru
dc.publisher Applied Sciences ru
dc.relation.ispartofseries 15, 7893;
dc.subject cone-top pile foundation ru
dc.subject bearing capacity ru
dc.subject load–settlement behavior ru
dc.subject soil– structure interaction ru
dc.subject hybrid foundation system ru
dc.subject underground mining areas ru
dc.title Experimental and Numerical Study of a Cone-Top Pile Foundation for Challenging Geotechnical Conditions ru
dc.type Article ru


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