The problem of cavity expansion from zero radius has no characteristic length and therefore possesses a similarity solution, in which the cavity pressure remains constant and the continuing deformation is geometrically self-similar. In this case, the incremental velocity approach first used by R. Hill in 1950 to analyse cavity expansion in Tresca materials can be extended to derive a solution for the limiting pressure of cavity expansion in other types of material. In this paper, a rigorous semi-analytical solution is derived, following Hill's incremental velocity method, for the expansion of cavities from zero initial radius in cohesive-frictional soils with limited dilation. In particular, the radius of the elastic–plastic interface c is used in this paper as the timescale and the solution for the limit pressure has been presented. Solutions are evaluated for a number of cases representative of a range of cohesive-frictional and dilatant soils. A comparison is also made between the solutions presented here and previous solutions for cohesive-frictional soils that have unlimited (on-going) plastic dilation. In particular, the influence of limited plastic dilation on the cavity limit pressure is identified and discussed.
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1 July 2023
Research Article|
November 30 2021
Cavity expansion in cohesive-frictional soils with limited dilation
John P. Carter;
John P. Carter
*University of Newcastle, Newcastle, Australia.
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Hai-Sui Yu
Hai-Sui Yu
†University of Leeds, Leeds, UK.
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Publisher: Emerald Publishing
Received:
June 03 2021
Accepted:
September 20 2021
Online ISSN: 1751-7656
Print ISSN: 0016-8505
© 2021 Thomas Telford Ltd
2021
Geotechnique (2023) 73 (7): 629–635.
Article history
Received:
June 03 2021
Accepted:
September 20 2021
Citation
Carter JP, Yu H (2023), "Cavity expansion in cohesive-frictional soils with limited dilation". Geotechnique, Vol. 73 No. 7 pp. 629–635, doi: https://doi.org/10.1680/jgeot.21.00141
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