Skip to main content
Top
Published in: Environmental Earth Sciences 11/2016

01-06-2016 | Thematic Issue

A new hydro-mechanical model for bentonite resaturation applied to the SEALEX experiments

Authors: K. E. Thatcher, A. E. Bond, P. Robinson, C. McDermott, A. P. Fraser Harris, S. Norris

Published in: Environmental Earth Sciences | Issue 11/2016

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Bentonite barriers perform safety critical functions in many radioactive waste disposal concepts, but it is challenging to accurately predict bentonite resaturation behaviour in repository settings. Coupled models of the hydro-mechanical response of bentonite are used to demonstrate understanding of bentonite behaviour in experiments and to predict the response of bentonite in a repository environment. Following trials of a range of numerical approaches, a new model is presented, referred to as the Internal Limit Model, which makes use of key observations on limiting stresses supported in bentonite samples in experimental data. This model is based on the Modified Cam Clay model, and uses the observation that for a given dry density of bentonite, there is a limiting stress that the sample can support, be that stress due to swelling, compaction or suction, to explicitly couple the hydraulic and mechanical models. The model is applied to experimental data from the SEALEX experiments, involving a 70/30 by mass mixture of MX80 bentonite and sand. The model is able to reproduce the experimental data using a single set of parameters for all the experiments considered. This builds confidence that the model will be useful in the future for predictive modelling given appropriate data to characterise the bentonite material being used.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Appendix
Available only for authorised users
Literature
go back to reference Alonso E, Gens A, Josa A (1990) A constitutive model for partially saturated soils. Géotechnique 40(3):405–430CrossRef Alonso E, Gens A, Josa A (1990) A constitutive model for partially saturated soils. Géotechnique 40(3):405–430CrossRef
go back to reference Barnichon J-D, Dick P, Bauer C (2011) The SEALEX in situ experiments: performance tests of repository seals. In: Zhou Y, Qian Q (eds) Harmonising rock engineering and the environment. Taylor & Francis, London, pp 1391–1394. ISBN 978-0-415-80444-8CrossRef Barnichon J-D, Dick P, Bauer C (2011) The SEALEX in situ experiments: performance tests of repository seals. In: Zhou Y, Qian Q (eds) Harmonising rock engineering and the environment. Taylor & Francis, London, pp 1391–1394. ISBN 978-0-415-80444-8CrossRef
go back to reference Benbow SJ, Rivett MO, Chittenden N, Herbert AW, Watson S, Williams SJ, Norris S (2014) Potential migration of buoyant LNAPL from Intermediate Level Waste (ILW) emplaced in a geological disposal facility (GDF) for UK radioactive waste. J Contam Hydrol 167:1–22CrossRef Benbow SJ, Rivett MO, Chittenden N, Herbert AW, Watson S, Williams SJ, Norris S (2014) Potential migration of buoyant LNAPL from Intermediate Level Waste (ILW) emplaced in a geological disposal facility (GDF) for UK radioactive waste. J Contam Hydrol 167:1–22CrossRef
go back to reference Bond A, Millard A, Nakama S, Zhang C, Garitte B (2013) Approaches for representing hydromechanical coupling between large engineered voids and argillaceous porous media at ventilation experiment, Mont Terri. J Rock Mech Geotech Eng 5(2):85–96CrossRef Bond A, Millard A, Nakama S, Zhang C, Garitte B (2013) Approaches for representing hydromechanical coupling between large engineered voids and argillaceous porous media at ventilation experiment, Mont Terri. J Rock Mech Geotech Eng 5(2):85–96CrossRef
go back to reference Bond A, Thatcher K, Chittenden N, McDermott C, Fraser-Harris A (2014) RWM coupled processes project: first annual report for RWM participation in DECOVALEX-2015 tasks A and C1. AMEC report to RWM 18040-TR-002 v2.0 Bond A, Thatcher K, Chittenden N, McDermott C, Fraser-Harris A (2014) RWM coupled processes project: first annual report for RWM participation in DECOVALEX-2015 tasks A and C1. AMEC report to RWM 18040-TR-002 v2.0
go back to reference Bond A, Thatcher K, Chittenden N, McDermott C, Fraser-Harris A (2015a) RWM coupled processes project: second annual report for RWM participation in DECOVALEX-2015 tasks A and C1. AMEC report to RWM 18040-TR-003 v3.0 Bond A, Thatcher K, Chittenden N, McDermott C, Fraser-Harris A (2015a) RWM coupled processes project: second annual report for RWM participation in DECOVALEX-2015 tasks A and C1. AMEC report to RWM 18040-TR-003 v3.0
go back to reference Bond A, Thatcher K, Chittenden N, McDermott C, Fraser-Harris A (2015b) RWM coupled processes project: third annual report for RWM participation in DECOVALEX-2015 tasks A and C1. AMEC foster wheeler report to RWM 18040-TR-004 v2.0 Bond A, Thatcher K, Chittenden N, McDermott C, Fraser-Harris A (2015b) RWM coupled processes project: third annual report for RWM participation in DECOVALEX-2015 tasks A and C1. AMEC foster wheeler report to RWM 18040-TR-004 v2.0
go back to reference Bond A, Thatcher K, Chittenden N, McDermott C, Fraser-Harris A, Wilson J (2015c) Final report of the coupled processes project: outcomes from DECOVALEX-2015. AMEC foster wheeler report to RWM 18040-TR-005 v1.0 Bond A, Thatcher K, Chittenden N, McDermott C, Fraser-Harris A, Wilson J (2015c) Final report of the coupled processes project: outcomes from DECOVALEX-2015. AMEC foster wheeler report to RWM 18040-TR-005 v1.0
go back to reference Dueck A (2004) Hydro-mechanical properties of a water unsaturated sodium bentonite. Ph.D thesis, Lund University Dueck A (2004) Hydro-mechanical properties of a water unsaturated sodium bentonite. Ph.D thesis, Lund University
go back to reference Howell P, Kozyreff G and Ockenden J (2009) Applied Solid Mechanics. Cambridge University Press, Cambridge Howell P, Kozyreff G and Ockenden J (2009) Applied Solid Mechanics. Cambridge University Press, Cambridge
go back to reference Jacinto AC, Villar M, Ledesma A (2012) Influence of water density on the water retention curve of expansive clays. Géotechnique 62(8):657–667CrossRef Jacinto AC, Villar M, Ledesma A (2012) Influence of water density on the water retention curve of expansive clays. Géotechnique 62(8):657–667CrossRef
go back to reference Kristensson O, Börgesson L (2015) Canister retrieval test: final report. SKB technical report TR-14-19 Kristensson O, Börgesson L (2015) Canister retrieval test: final report. SKB technical report TR-14-19
go back to reference Mayor JC, García-Siñeriz JL, Alonso E, Alheid HJ, Blümbling P (2005) Final report of the engineered barrier emplacement experiment in opalinus clay (FIS5 - 1999 – 00121 EURATOM) Mayor JC, García-Siñeriz JL, Alonso E, Alheid HJ, Blümbling P (2005) Final report of the engineered barrier emplacement experiment in opalinus clay (FIS5 - 1999 – 00121 EURATOM)
go back to reference Nagra (2013) Main outcomes and review of the FEBEX In Situ Test (GTS) and Mock-Up after 15 years of operation. Arbeitsbericht NAB 13–96 Nagra (2013) Main outcomes and review of the FEBEX In Situ Test (GTS) and Mock-Up after 15 years of operation. Arbeitsbericht NAB 13–96
go back to reference Navarro V, Asensio L, Alonso J, Yustres Á, Pintado X (2014) Multiphysics implementation of advanced soil mechanics models. Comput Geotech 60:20–28CrossRef Navarro V, Asensio L, Alonso J, Yustres Á, Pintado X (2014) Multiphysics implementation of advanced soil mechanics models. Comput Geotech 60:20–28CrossRef
go back to reference Roscoe KH, Burland JB (1968) On the generalised stress-strain behaviour of ‘wet clay’. In: Heyman J, Leckie FA (eds) Engineering plasticity. Cambridge University Press, Cambridge, pp 535–609 Roscoe KH, Burland JB (1968) On the generalised stress-strain behaviour of ‘wet clay’. In: Heyman J, Leckie FA (eds) Engineering plasticity. Cambridge University Press, Cambridge, pp 535–609
go back to reference Roscoe KH, Schofield AN (1963) Mechanical behaviour of an idealised ‘wet clay’. In: Proceedings of 2nd European conference on soil mechanics and foundation engineering, Wiesbaden, vol 1, pp 47–54 Roscoe KH, Schofield AN (1963) Mechanical behaviour of an idealised ‘wet clay’. In: Proceedings of 2nd European conference on soil mechanics and foundation engineering, Wiesbaden, vol 1, pp 47–54
go back to reference Rutqvist J, Zheng L, Chen F, Liu H-H, Birkholzer (2014) Modelling of coupled thermo-hydro-mechanical processes with links to geochemistry associated with bentonite-backfilled repository tunnels in clay formations. Rock Mech Rock Eng 47:167–186. doi:10.1007/s00603-013-0375-x CrossRef Rutqvist J, Zheng L, Chen F, Liu H-H, Birkholzer (2014) Modelling of coupled thermo-hydro-mechanical processes with links to geochemistry associated with bentonite-backfilled repository tunnels in clay formations. Rock Mech Rock Eng 47:167–186. doi:10.​1007/​s00603-013-0375-x CrossRef
Metadata
Title
A new hydro-mechanical model for bentonite resaturation applied to the SEALEX experiments
Authors
K. E. Thatcher
A. E. Bond
P. Robinson
C. McDermott
A. P. Fraser Harris
S. Norris
Publication date
01-06-2016
Publisher
Springer Berlin Heidelberg
Published in
Environmental Earth Sciences / Issue 11/2016
Print ISSN: 1866-6280
Electronic ISSN: 1866-6299
DOI
https://doi.org/10.1007/s12665-016-5741-z

Other articles of this Issue 11/2016

Environmental Earth Sciences 11/2016 Go to the issue