Determination of the transport properties of a blended concrete from its electrical properties measured during a migration test

J. Lizarazo-Marriaga, Peter A. Claisse

    Research output: Contribution to journalArticle

    7 Citations (Scopus)
    2 Downloads (Pure)
    Original languageEnglish
    Pages (from-to)163 –175
    JournalMagazine of Concrete Research
    Volume62
    Issue number3
    DOIs
    Publication statusPublished - 2010

    Bibliographical note

    The full text of this item is not available from the repository.
    Permission is granted by ICE Publishing to print one copy for personal use. Any other use of these PDF files is subject to reprint fees. The journal homepage can be found at www.concrete-research.com.

    Keywords

    • electric field
    • Nernst-Planck equation
    • non-linear electric membrane potential
    • chlorides
    • concrete
    • concrete migration test
    • transient current

    Cite this

    Determination of the transport properties of a blended concrete from its electrical properties measured during a migration test. / Lizarazo-Marriaga, J.; Claisse, Peter A.

    In: Magazine of Concrete Research, Vol. 62, No. 3, 2010, p. 163 –175.

    Research output: Contribution to journalArticle

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    keywords = "electric field, Nernst-Planck equation, non-linear electric membrane potential, chlorides, concrete, concrete migration test, transient current",
    author = "J. Lizarazo-Marriaga and Claisse, {Peter A.}",
    note = "The full text of this item is not available from the repository. Permission is granted by ICE Publishing to print one copy for personal use. Any other use of these PDF files is subject to reprint fees. The journal homepage can be found at www.concrete-research.com.",
    year = "2010",
    doi = "10.1680/macr.2010.62.3.163",
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    AU - Claisse, Peter A.

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    PY - 2010

    Y1 - 2010

    KW - electric field

    KW - Nernst-Planck equation

    KW - non-linear electric membrane potential

    KW - chlorides

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    KW - concrete migration test

    KW - transient current

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