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Experimental dataset to the journal article: 'The long-term strength and creep behavior of fully saturated shaly Opalinus Clay'

; ; ; ;

Online
DOI: 10.18154/RWTH-2025-01319
URL: https://publications.rwth-aachen.de/record/1004000/files/RAW_DATA.zip
URL: https://publications.rwth-aachen.de/record/1004000/files/READ_ME.pdf

Einrichtungen

  1. Lehrstuhl für Ingenieurgeologie und Hydrogeologie (532110)
  2. Fraunhofer-Einrichtung für Energieinfrastrukturen und Geothermie - IEG (053600)
  3. Fachgruppe für Geowissenschaften und Geographie (530000)


Inhaltliche Beschreibung (Schlagwörter)
Opalinus Clay (frei) ; Multi-stage Creep Testing (frei) ; Drained Creep Behavior (frei)

Kurzfassung
Long-term deformation in tunneling is typically associated with consolidation and creep, two time-dependent processes that may occur simultaneously and are superimposed. However, from tunnel convergence measurements these two processes cannot be distinguished. Thus, an accurate laboratory characterization of creep mechanisms under long-term in-situ conditions (i.e., fully saturated and drained) is required to improve numerical predictions for deep geological nuclear waste repositories. The laboratory study investigates the pure rheological creep behavior of shaly Opalinus Clay. After full re-saturation and consolidation of the specimens, a fully drained multi-stage creep test was performed. Time-dependent axial and radial deformations were monitored during creep stages of constant effective stress. The results show that the creep strain rates increase exponentially with increasing differential stress accompanied by a change in the dominant creep mechanism. Creep strain rates at low differential stresses up to 10 MPa are in the magnitudes of 10-11s-1 and 10-10s-1, whereas creep rates in the magnitudes of 10-10s-1 and 10-9s-1 are observed at elevated differential stresses of more than 10 MPa, before initiation of tertiary creep, i.e., creep failure. Two thresholds for possible creep failure are presented, defining a stress-related long-term strength and a strain-related onset of tertiary creep.

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Dokumenttyp
Dataset

Format
online

Sprache
English

Interne Identnummern
RWTH-2025-01319
Datensatz-ID: 1004000

Beteiligte Länder
Germany

 GO


Related:

http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png Journal Article  ;  ;  ;  ;
The long-term strength and creep behavior of fully saturated shaly Opalinus Clay
Engineering geology 348, 107961 () [10.1016/j.enggeo.2025.107961]  GO OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS


CC0: Public Domain Dedication ; OpenAccess

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532110
053600
530000

 Record created 2025-02-07, last modified 2025-02-19


OpenAccess:
RAW_DATA - Download fulltext ZIP
READ_ME - Download fulltext PDF
(additional files)
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