Repository logo

Infoscience

  • English
  • French
Log In
Logo EPFL, École polytechnique fédérale de Lausanne

Infoscience

  • English
  • French
Log In
  1. Home
  2. Academic and Research Output
  3. Conferences, Workshops, Symposiums, and Seminars
  4. Mechanical anisotropy of Opalinus Clay shale: a multiscale approach
 
conference paper not in proceedings

Mechanical anisotropy of Opalinus Clay shale: a multiscale approach

Madaschi, Aldo  
•
Crisci, Eleonora  
•
Ferrari, Alessio  
Show more
September 28, 2018
International Symposium on Energy Geotechnics (SEG) 2018

The mechanical properties of Opalinus Clay shale are strongly affected by the mineralogical composition of the layers and by their spatial arrangement at centimetre to decimetre scales. For this reason, accurate laboratory characterization of the mechanical properties, in many cases, is not representative of the material behaviour at a larger scale. A new approach is proposed to integrate petrophysical information from boreholes with small-scale mechanical laboratory characterization to extrapolate the distribution of mechanical properties to the scale of the engineering problem. The workflow is based on two fundamental concepts: defining a layering setting at different length scales from petrophysical investigations and creating a numerical representation of the mineralogically homogeneous layers. Merging the two concepts, it is possible to define the layered geometry of a finite element analysis of the laboratory tests used to calibrate the mechanical properties of the homogeneous layers. Once the properties of the layers have been assessed, the upscaling process can be performed using the geometric configuration at larger length scales. The layering setting is deduced, at the core scale, from petrophysical measurements and then extended by geostatistical prediction to the borehole scale. The workflow has been applied in a series of high accuracy laboratory tests to obtain the spatial distribution of mechanical properties at the borehole scale on the basis of the layering configuration deduced from a series of X-ray computed tomography tests.

  • Details
  • Metrics
Type
conference paper not in proceedings
Author(s)
Madaschi, Aldo  
Crisci, Eleonora  
Ferrari, Alessio  
Alcolea Rodriguez, Andres
Keller, Lukas
Marschall, Paul
Laloui, Lyesse  
Date Issued

2018-09-28

Publisher

LMS-EPFL

Subjects

layered media

•

multiscale modelling

•

anisotropy

•

clay shales

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LMS  
Event nameEvent placeEvent date
International Symposium on Energy Geotechnics (SEG) 2018

Lausanne, Switzerland

September 25-28, 2018

RelationURL/DOI

IsSupplementedBy

https://seg2018.epfl.ch/index.php/extended-abstract-proceedings/
Available on Infoscience
February 19, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/154569
Logo EPFL, École polytechnique fédérale de Lausanne
  • Contact
  • infoscience@epfl.ch

  • Follow us on Facebook
  • Follow us on Instagram
  • Follow us on LinkedIn
  • Follow us on X
  • Follow us on Youtube
AccessibilityLegal noticePrivacy policyCookie settingsEnd User AgreementGet helpFeedback

Infoscience is a service managed and provided by the Library and IT Services of EPFL. © EPFL, tous droits réservés