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5 edition of Chemo-mechanical coupling in clays found in the catalog.

Chemo-mechanical coupling in clays

from nano-scale to engineering applications : proceedings of the Workshop on Chemo-Mechanical Coupling in Clays : from Nano-Scale to Engineering Applications, Maratea, Italy, 28-30 June 2001

by Workshop on Chemo-Mechanical Coupling in Clays: from Nano-Scale to Engineering Applications (2001 Maratea, Italy)

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Published by Balkema in Lisse [Netherlands], Exton, PA .
Written in English

    Subjects:
  • Soil mechanics -- Congresses,
  • Clay soils -- Congresses,
  • Clay minerals -- Congresses

  • Edition Notes

    Includes bibliographical references and index.

    Statementedited by C. Di Maio, T. Hueckel, B. Loret.
    GenreCongresses.
    ContributionsDi Maio, C., Hueckel, Tomasz., Loret, B.
    Classifications
    LC ClassificationsTA710.A1 W64 2001
    The Physical Object
    Paginationviii, 339 p. :
    Number of Pages339
    ID Numbers
    Open LibraryOL3705759M
    ISBN 109058093840
    LC Control Number2003275132

    Using a hybrid Monte Carlo/molecular dynamics simulation, we show here that a strong chemo-mechanical coupling may exist between gas adsorption and mechanical strain of a kerogen matrix. The results indicate that the kerogen volume can expand by up to % and 11% upon CH 4 and CO 2 adsorption at atm, respectively. Applications of bio- and chemo-mechanical models in emerging technologies. Bio- and Chemo- Mechanical Processes in Geotechnical Engineering provides researchers and practitioners with a comprehensive introduction to the recent advances in the area and invaluable insight into the developments within this emerging field.

    chemo-mechanical coupling and pore-size evolution In many situations geochemical and mechanical compaction do not act independently of each other, but rather act in concert, and the two approaches developed in the previous sections can be integrated to yield a single expression for the evolution of pore-size by: Chemo-mechanical coupling in saturated porous media: elastic-plastic behaviour of homoionic expansive clays. submitted. Google Scholar Ma, C. M. and T. Hueckel ().Author: Benjamin Loret, Alessandro Gajo, Tomasz Hueckel.

      In this paper a conceptual elastoplastic model is developed for describing the chemo-mechanical behaviour of chalk based on the framework of the modified Cam Clay model. Central to the model is the concept of intergranular stresses, introduced as the substitute for Terzaghi's effective stress to describe the chalk : T. Ma, C. Wei, C. Wei, P. Chen, W. Li. Elastic chemo-mechanical coupling is introduced through a potential, in such a way that the tangent elastic stiffness is symmetric. The elastic-plastic behaviour aims at reproducing typical experimental phenomena observed on natural clays during chemical and mixed chemo-mechanical loadings, including chemical consolidation and swelling already Author: Alessandro Gajo, Benjamin Loret.


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Chemo-mechanical coupling in clays by Workshop on Chemo-Mechanical Coupling in Clays: from Nano-Scale to Engineering Applications (2001 Maratea, Italy) Download PDF EPUB FB2

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1st Edition Published on January 1, by CRC Press Clay behaviour is affected by coupled mechanical and chemical processes occurring in them at various scale Chemo-Mechanical Coupling in Clays: From Nano-scale to Engineering App.

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The peculiar chemical and electro-chemical properties of clays are the source of many undesired effects. These papers provide insight into the variables controlling clay -Mechanical Coupling in Clays: From Nano-Scale to Engineering Applications: Proceedings of the Workshop, Maratea, June (Hardcover)Brand: C Di Maio; T Hueckel; B Loret.

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Chemo-Mechanical Coupling in Clays: From Nano-Scale to Engineering Applications: Proceedings of the Workshop, Maratea, June C. Di Maio, Tomasz Hueckel, Benjamin Loret (eds.) Clay behaviour is affected by coupled mechanical and chemical processes occurring in them at various scales.

A Model for Chemo-Mechanical Coupling Saturated clay is viewed as a porous deformable continuum consisting of two overlapping phases, each phase containing several species. Phase identification follows a kinematic criterion and attributes the absorbed water to the solid phase based on the affinity of their velocities, Hueckel [].Author: Benjamin Loret, Alessandro Gajo, Tomasz Hueckel.

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Elastic chemo-mechanical coupling is introduced through a potential, in such a way that the tangent poro-elasticity matrix remains symmetric. Material parameters needed to quantify the coupling are calibrated from specific experiments available in the recent literature.

Moreover, clays containing essentially a single counterion, namely Na Cited by: Natural and compacted soils react differently from dilute suspensions to chemical changes because of their fabric.

It is, therefore, not possible to derive reliable relationships (at least from the quantitative point of view) describing the chemo-mechanical behavior of active soils solely on the basis of mineralogical and chemical properties.Chemo-mechanical coupling in saturated porous media: Elastic-plastic behaviour of homoionic expansive clays Article in International Journal of Solids and Structures 39(10) May