The behaviour of sprayed concrete (SC) tunnel linings was analysed considering the secondary deformation effects over time. Considering the behaviour of SC support under the loads applied by the rock mass and the interaction between the lining and the rock mass, a detailed analysis of the stress and deformation was performed using the convergence–confinement method (CCM) and the hyperstatic reaction method (HRM). In order to develop a procedure for the correct design of a shotcrete lining, an analysis was required that combined the CCM and the HRM. To take into account the creep phenomenon, the Voigt–Kelvin model was used to model the shotcrete; this model employs two springs and a viscous damper to reproduce the actual behaviour physically. Some useful findings were obtained on the trend of the safety factors of shotcrete linings over time.
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August 2019
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Research Article|
November 06 2018
A numerical model to assess the creep of shotcrete linings Available to Purchase
Pierpaolo Oreste, PhD
;
Pierpaolo Oreste, PhD
Full Professor, Department of Environmental, Land and Infrastructural Engineering, Politecnico di Torino, Turin, Italy
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Giovanni Spagnoli, PhD, MBA
;
Giovanni Spagnoli, PhD, MBA
Global Project and Technology Manager Underground Construction, BASF Construction Solutions GmbH, Trostberg, Germany (corresponding author: giovanni.spagnoli@basf.com)
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Luigi Alberto Ceravolo, MSc
Luigi Alberto Ceravolo, MSc
Former Research Fellow, Department of Environmental, Land and Infrastructural Engineering, Politecnico di Torino, Turin, Italy
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Publisher: Emerald Publishing
Received:
May 21 2018
Accepted:
October 08 2018
Online ISSN: 1751-8563
Print ISSN: 1353-2618
ICE Publishing: All rights reserved
2018
Proceedings of the Institution of Civil Engineers - Geotechnical Engineering (2019) 172 (4): 344–354.
Article history
Received:
May 21 2018
Accepted:
October 08 2018
Citation
Oreste P, Spagnoli G, Ceravolo LA (2019), "A numerical model to assess the creep of shotcrete linings". Proceedings of the Institution of Civil Engineers - Geotechnical Engineering, Vol. 172 No. 4 pp. 344–354, doi: https://doi.org/10.1680/jgeen.18.00089
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