This study examines the role of boundary friction in promoting heterogeneous compaction in soft rock specimens loaded at high confining pressure outside the domain of compaction localisation. An elastoplastic constitutive model characterised by tunable hardening/softening behaviour is used to conduct the analyses. Finite-element simulations suggest that material instability is a non-necessary condition for the emergence of compaction fronts. Such fronts propagated as a result of a severe deviation in the local responses induced by frictional constraints. These findings suggest that boundary effects can bias the assessment of the extent of the compaction localisation domain. Experimental countermeasures and informed model calibration procedures are therefore necessary to minimise such bias and enable more accurate predictions of soft rock compaction.
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September 2020
Research Article|
August 27 2020
Simulation of emergent compaction banding fronts caused by frictional boundaries
G. Shahin;
G. Shahin
*McCormick School of Engineering, Northwestern University, Evanston, IL, USA.
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G. Buscarnera
G. Buscarnera
*McCormick School of Engineering, Northwestern University, Evanston, IL, USA.
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Publisher: Emerald Publishing
Received:
February 23 2020
Revision Received:
June 05 2020
Accepted:
July 27 2020
Online ISSN: 2045-2543
ICE Publishing: all rights reserved
2020
Geotechnique Letters (2020) 10 (3): 436–444.
Article history
Received:
February 23 2020
Revision Received:
June 05 2020
Accepted:
July 27 2020
Citation
Shahin G, Buscarnera G (2020), "Simulation of emergent compaction banding fronts caused by frictional boundaries". Geotechnique Letters, Vol. 10 No. 3 pp. 436–444, doi: https://doi.org/10.1680/jgele.20.00021
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