PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Wielofizyczna optymalizacja modelu THM oraz niepewność propagacji ciepła wokół eksperymentalnego składowiska odpadów jądrowych

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
EN
THM multiphysical optimization and uncertainties propagation around the full-scale experiment of a nuclearwaste repository concept
Języki publikacji
EN
Abstrakty
EN
The problem of high heat emission during repository of nuclear waste in deep geological formations. Numerical modeling of heat propagation in the rock mass to study thermo-hydro-mechanical (THM) interactions. Verification and calibration of the THM 3D numerical model using a large-scale experiment, taking into account the elements of uncertainty and probability.
PL
Problem dużej emisji ciepła podczas składowania odpadów jądrowych w głębokich formacjach geologicznych. Modelowanie numeryczne propagacji ciepła w górotworze w celu zbadania interakcji termo-hydro-mechanicznych (THM). Weryfikacja i kalibracja modelu numerycznego THM 3D za pomocą eksperymentu w dużej skali z uwzględnieniem elementów niepewności i probabilistyki.
Słowa kluczowe
Rocznik
Tom
Strony
159--166
Opis fizyczny
Bibliogr. 38 poz., rys., tab.
Twórcy
  • Soil Mechanics Laboratory, Ecole Polytechnique Federale de Lausanne, Switzerland
  • Nesol-Numerical Engineering Solutions Sarl, Ecublens, Switzerland
  • Soil Mechanics Laboratory, Ecole Polytechnique Federale de Lausanne, Switzerland
Bibliografia
  • 1. Bishop A. W., Blight G. E.: Some Aspects of Effective Stress in Saturated and Partly Saturated Soils. Geotechnique, 13(3), 1963, 177-197. https://doi.org/10.1680/geot. 1963.13.3.177.
  • 2. Bossart R: Characteristics of the Opalinus Clay at Mont Terri. 2011.
  • 3. Bossart P., Wermeille S.: The stress field in the Mont Terri region. Data compilation. In P. Heitzmann & J.-P. Tripet (Eds.), Mont Terri Project - Geology, Paleohydrology and Stress Field of the Mont Terri Region, 2013, 65-92.
  • 4. Crisci E.: Hydro-mechanical response of Opalinus Clay shale: dependency on composition and burial depth. 207, 2019. http://infoscience.epfl.ch/re-cord/271680.
  • 5. Daneluzzi R., Burrus F., KuttelJ., Muller H. R., Kohler S.: Arbeitsbericht NAB 14-54 Nationale Genossenschaft fur die Lagerung radioaktiver Ab-falle Construction of the Emplacement Tunnel for the Full-scale Emplacement (FE) Experiment at Mont Terri Rock Laboratory, 2014. www.nagra.ch.
  • 6. Electricite de France: Finite element Code_Aster, Analysis of Structures and Thermomechanics for Studies and Research, 1989. Open source on www.code-aster.org.
  • 7. Femandez-Garcia D., Jaime Gómez-Hernandez J., & Mayor J.-C.: Estimating hydraulic conductivity of the Opalinus Clay at the regional scale: Combined effect of desaturation and EDZ. Physics and Chemistry of the Earth, 32(8-14), 2007, 639-645.
  • 8. Ferrari A., Favero V., Marschall P, & Laloui L.: Experimental analysis of the water retention behaviour of shales. International Journal of Rock Mechanics and Mining Sciences, 72, 2014, 61-70-61-70.
  • 9. Garitte B., Muller H. R., Vogt T, Vietor T, Thatcher K., Senger R.: Scoping Computations for the Fuli Scale Emplacement (FE) Experiment in the Mont Terri Underground Rock Laboratory, 2013.
  • 10. Garitte B., Nguyen T. S., Barnichon J. D., Graupner B. J., Lee C, Maekawa K., Manepally C, Ofoegbu G, Dasgupta B., Fedors R., Pan P. Z., Feng X. T, Rutqvist J., Chen F, Birkholzer, J., Wang Q., Kolditz O., & Shao H.: Modelling the Mont Terri HE-D experiment for the Thermal-Hydraulic-Mechanical response of a bedded argillaceous formation to heating. Envirorunentai Earth Sciences, 76(9), 2017. https://doi.org/10.1007/sl2665-017-6662-l.
  • 11. Garitte B., Shao H., Wang X. R., Nguyen T. S., Li Z., Rutqvist J., Birkholzer J., Wang W. Q., Kolditz O., Pan P. Z., Feng X. T, Lee C, Graupner B. J., Maekawa K., Manepally C, Dasgupta B., Stothoff S., Ofoegbu G, Fedors R., Barnichon J. D.: Evaluation of the predictive capability of coupled thermo-hydro-mechanical models for a heated bentonite/clay system (HE-E) in the Mont Terri Rock Laboratory. EnvironmentaI Earth Sciences, 76(2), 2017. https://doi. org/10.1007/s 12665-016-6367-x.
  • 12. Gaus I., Garitte B., Senger R., Gens A., Vasconcelos R., Garcia-Sineriz J. L., Trick T, Wieczorek K., Czaikowski O., Schuster K i inni: The HE-E experiment: lay-out, interpretation and THM modelling. Nagra Arbeitsbericht NAB, 2014, 14-53-14-53.
  • 13. Gaus I., Wieczorek K., Schuster K., Garitte B., Senger R., Vasconcelos R., Mayor J. C: EBS behaviour immediately after repository closure in a clay host rock: HE-E experiment (Mont Terri URL). Geological Society Special Publication, 400(1), 2014, 71-91. https://doi.org/10.1144/SP400.ll.
  • 14. Gens A., Vaunat J., Garitte B., Wileveau Y.: In situ behaviour of a stiff layered clay subject to thermal loading: observations and interpretation. Stiff Sedimentary Clays: Genesis and Engineering Behaviour: Geotechnique Symposium in Print 2007, 2011, 123-144-123-144.
  • 15. H. Bock: RA Experiment: Updated review of the rock mechanics properties of the Opalinus clay of the Mont Terri URL based on laboratory and field testing. 2009.
  • 16. Herman J., Usher W.: SALib: An open-source Python library for Sensitivity Analysis. The Journal of Open Source Software, 2(9), 97, 2017. https:// doi.org/10.21105/joss.00097.
  • 17. Iwanaga T, Usher W., Herman J.: Toward SALib 2.0: Advancing the accessibility and interpretability of global sensitivity analyses. Socio-Environmental Systems Modelling, 4, 18155, 2022. https://doi.org/10.18174/sesmo.18155.
  • 18. Jobmann M., Polster M.: The response of Opalinus clay due to heating: A combined analysis of in situ measurements, laboratory investigations and numerical calculations. Physics and Chemistry of the Earth, Parts A/B/C, 32(8), 2007, 929-936. https://www.sciencedirect.com/science/article/pii/ S1474706506002555.
  • 19. Leupin O. X., Smith P, Marschall P, Johnson L., Savage D., Cloet V., Schneider J., Senger R.: High-level waste repository-induced effects. 2016, www.nagra.ch.
  • 20. Levasseur S.: Analyse Inverse en Geotechniąue: developpement d'une methode a base d'algorithmes genetiąues. 2007. https://tel.archives-ouvertes.fr/ tel-00185671.
  • 21. Marschall P, Croise J., Schlickenrieder L., Boisson J. Y., Vogel P, Yamamoto S.: Synthesis of hydrogeological investigations at the Mont Terri site (phases 1 to 5). Mont Terri Project-Hydrogeological Synthesis, Osmotic Flow, Edited by: Heitzmann, P, Reports of the Federal Office for Water and Geology, Geology Series, 6,2004, 7-92-97-92.
  • 22. Mayor J.-C, Velasco M., Garcia-Sineriz J.-L.: Ventilation experiment in the Mont Terri underground laboratory. Physics and Chemistry of the Earth, Parts A/B/C, 32(8-14), 2007, 616-628-616-628.
  • 23. Mualem Y: A new model for predicting the hydraulic conductivity of unsaturated porous media. Water Resources Research, 12(3), 1976, 513-522. https://agupubs.onlinelibrary.wiley.eom/doi/abs/l 0.1029/WRO 12i003p00513.
  • 24. Miigler C, Filippi M., Montarnal P, Martinez J.-M., Wileveau Y: Determination of the thermal conductivity of opalinus clay via simulations of experiments performed at the Mont Terri underground laboratory. Journal of Applied Geophysics, 58(2), 2006, 112-129-112-129.
  • 25. Munoz J., Alonso E. E., Lloret A.: Thermo-hydraulic characterisation of soft rock by means of heating pulse tests. Geotechniąue, 59(4), 2009, 293-306-293-306.
  • 26. Papafotiou A., Senger R, Li C, Singh A., Garitte B., Muller H., Marschall P: A prediction-evaluation approach to the full-scale emplacement exper-iment (Fe) in mont terri. Geological Society Special Publication, 482(1), 2019, 39-73. https://doi.Org/10.l 144/SP482.10.
  • 27. Saltelli A., Annoni P, Azzini I., Campolongo R, Ratto M., Tarantola S.: Variance based sensitivity analysis of model output. Design and estimator for the total sensitivity index. Computer Physics Communications, 181(2), 2010, 259-270. https://doi.Org/l 0.1016/j.cpc.2009.09.018.
  • 28. Saltelli A., Ratto M., Andres T., Campolongo F., Gariboni J., Gatelli D., Saisana M., & Tarantola S.: Global Sensitivity Analysis. The Primer, 2008. http ://www.andreasaltel 1 i .eu/file/repository/A_Saltel 1 i_Marco_Ratto_Terry_ Andres_Francesca_Campolongo_Jessica_Cariboni_Debora_Gatelli_Michaela_ Saisana_Stefano_Tarantola_Global_Sensitivity_Analysis_The_Primer_Wiley_ Interscience_2008_.pdf.
  • 29. Sivia D. S., Skilling J.: Data Analysis. 2006. http://aprsa.villanova.edu/ files/sivia.pdf.
  • 30. Sobol' I. M.: Global sensitivity indices for nonlinear mathematical models and their Monte Carlo estimates. Mathematics and Computers in Simulation, 55(1-3), 2001,271-280. https://doi.org/10.1016/S0378-4754(00)00270-6.
  • 31. Tang A. M., Cui Y. J.: Effects of mineralogy on thermo-hydro-mechanical parameters of MX80 bentonite. Joumal of Rock Mechanics and Geotechnical Engineering, 2(1), 2010, 91-96. https://www.sciencedirect.com/science/ article/pii/S 167477551530024X.
  • 32. van Genuchten M. Th.: A Closed-form Equation for Predicting the Hydraulic Conductivity of Unsaturated Soils. Soil Science Society of America Journal, 44(5), 1980, 892-898. https://acsess.onlinelibrary.wiley.com/doi/ abs/10.2136/sssaj 1980.03615995004400050002x.
  • 33. Villar M., Gomez-Espina R.: Effect of temperature on the water retention capacity of FEBEX and MX-80 bentonites, Unsaturated Soils. Advances in Geo-Engineering, London 2008, UK.
  • 34. Villar M. V., Romero F. J.: Water Retention Curves of Opalinus Clay. 2020.
  • 35. Virtanen P, Gommers R., Oliphant T. E., Haberland M., Reddy T, Cournapeau D., Burovski E., Peterson P, Weckesser W., Bright J., van der Walt S. J., Brett M., Wilson J., Millman K. J., Mayorov N., Nelson A. R. J., Jones E., Kern R., Larson E., ... Vazquez-Baeza Y.: SciPy 1.0: fundamental algorithms for scientific computing in Python. Nature Methods, 17(3), 2020, 261-272. https://doi.org/10.1038/S41592-019-0686-2.
  • 36. Wieczorek K., Miehe R., Garitte B.: Measurement of thermal parameters of the HE-E buffer materials. EURATOM Project PEBS Deliverable D, 2, 2011,2-5-2-5.
  • 37. Wileveau Y: THM behaviour of host rock: (HE-D experiment): Progress Report September 2003 - October 2004. TECHNICAL REPORT TR 2005-03 August 2005.
  • 38. Wojnarowicz M., Madaschi A., Laloui L.: Proceedings of the 17th Danube European Conference on Geotechnical Engineering, June 7-9,2023, Bucharest, Romania.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2024).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ea08fa6e-8ff4-4e4a-920e-6f82e3c30734
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.