Počet záznamů: 1  

Comparative modelling of laboratory experiments for the hydro-mechanical behaviour of a compacted bentonite–sand\nmixture

  1. 1.
    SYSNO ASEP0463747
    Druh ASEPJ - Článek v odborném periodiku
    Zařazení RIVJ - Článek v odborném periodiku
    Poddruh JČlánek ve WOS
    NázevComparative modelling of laboratory experiments for the hydro-mechanical behaviour of a compacted bentonite–sand
    mixture
    Tvůrce(i) Millard, A. (FR)
    Mokni, N. (FR)
    Barnichon, J. D. (FR)
    Tatcher, K. E. (FR)
    Bond, A. (GB)
    Mc Dermott, C. (GB)
    Blaheta, Radim (UGN-S) RID, SAI, ORCID
    Michalec, Zdeněk (UGN-S)
    Hasal, Martin (UGN-S)
    Nguyen, T. S. (CA)
    Nasir, O. (CA)
    Fedors, S. (US)
    Yi, H. (DE)
    Kolditz, O. (DE)
    Celkový počet autorů15
    Zdroj.dok.Environmental Earth Sciences. - : Springer - ISSN 1866-6280
    Roč. 75, č. 20 (2016), s. 1311-1327
    Poč.str.18 s.
    Forma vydáníOnline - E
    AkceDECOVALEX 2015 /8./
    Datum konání13.10.2015 - 16.10.2015
    Místo konáníWakkanai
    ZeměJP - Japonsko
    Typ akceWRD
    Jazyk dok.eng - angličtina
    Země vyd.DE - Německo
    Klíč. slovahydro-mechanical (hm) coupling ; numerical modelling ; sealing systems ; compacted bentonite–sand mixture
    Vědní obor RIVDB - Geologie a mineralogie
    Institucionální podporaUGN-S - RVO:68145535
    UT WOS000385135100012
    DOI10.1007/s12665-016-6118-z
    AnotaceA comparative modelling exercise involving several independent teams from the DECOVALEX-2015 project is presented in this paper. The exercise is based on various laboratory experiments that have been carried out in the framework of a French research programme called SEALEX and conducted by the IRSN. The programme focuses on the long-term performance of swelling clay-based sealing systems that provide an important contribution to the safety of underground nuclear waste disposal facilities. A number of materials are being considered in the sealing systems; the current work focuses on a 70/30 MX80 bentonite–sand mixture compacted at dry densities between 1.67 and 1.97 Mg/m3. The improved understanding of the full set of hydro-mechanical processes affecting the behaviour of an in situ sealing system requires both experiments ranging from small-scale laboratory tests to full-scale field emplacement studies and coupled hydro-mechanical models that are able to explain the observations in the experiments. The approach was to build models of increasing complexity starting for the simplest laboratory experiments and building towards the full-scale in situ experiments. Following this approach, two sets of small-scale laboratory experiments have been performed and modelled. The first set of experiments involves characterizing the hydro-mechanical behaviour of the bentonite–sand mixture by means of (1) water retention tests under both constant volume and free swell conditions, (2) infiltration test under constant volume condition, and (3) swelling and compression tests under suction control conditions. The second, more complex, experiment is a 1/10th scale mock-up of a larger-scale in situ experiment. Modelling of the full-scale experiment is described in a companion paper.
    PracovištěÚstav geoniky
    KontaktLucie Gurková, lucie.gurkova@ugn.cas.cz, Tel.: 596 979 354
    Rok sběru2017
    Elektronická adresahttp://link.springer.com/article/10.1007/s12665-016-6118-z
Počet záznamů: 1  

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