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Authorda Silva Burke, Talia S.
AuthorElshafie, Mohammed Z. E. B.
Available date2024-08-05T07:19:20Z
Publication Date2021
Publication NameGeotechnique
ResourceScopus
ISSN168505
URIhttp://dx.doi.org/10.1680/jgeot.19.P.175
URIhttp://hdl.handle.net/10576/57438
AbstractOne of the most critical assumptions in the application of arching theory is an accurate estimate of the coefficient of lateral stress, K, used to relate vertical and horizontal stresses on the assumed failure plane. Historically, this has been treated as an empirical constant, and previous mathematical estimates based on consideration of principal stress rotations in the soil have not been able to match experimental values. This paper presents an analytical solution based on limit equilibrium to calculate K based on the rotation of principal stresses at the failure plane and the formation of a continuous arc of major principal stresses across the trapdoor, as observed from centrifuge tests specifically conducted to study arching in granular soils. The predicted K values from the analytical method showed a good match to historical measurements of K, and were successfully used to predict the vertical stresses from the centrifuge tests conducted in this study. The proposed method gives a new analytical basis from soil mechanics principles and an understanding of the rotation of principal stresses to calculate this factor.
SponsorACKNOWLEDGEMENTS The centrifuge tests reported in this paper were conducted at the Schofield Centre at the University of Cambridge. Thanks are due to the technicians and staff for their assistance. The first author would like to acknowledge the Gates Cambridge Scholarship for financial support.
Languageen
PublisherICE Publishing
SubjectBuried structures
Centrifuge modelling
Limit equilibrium methods
TitleArching in granular soils: Limit state equilibrium
TypeArticle
Pagination700-713
Issue Number8
Volume Number71
dc.accessType Abstract Only


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