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    Computational Modelling of Concrete Structures

    Proposal review

    Proceedings of the Conference on Computational Modelling of Concrete and Concrete Structures (EURO-C 2018), February 26 - March 1, 2018, Bad Hofgastein, Austria

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    Contributor(s)
    Meschke, Günther (editor)
    Pichler, Bernhard (editor)
    Rots, Jan (editor)
    Language
    English
    Show full item record
    Abstract
    The EURO-C conference series (Split 1984, Zell am See 1990, Innsbruck 1994, Badgastein 1998, St. Johann im Pongau 2003, Mayrhofen 2006, Schladming 2010, St. Anton am Arlberg 2014, and Bad Hofgastein 2018) brings together researchers and practising engineers concerned with theoretical, algorithmic and validation aspects associated with computational simulations of concrete and concrete structures. Computational Modelling of Concrete Structures reviews and discusses research advancements and the applicability and robustness of methods and models for reliable analysis of complex concrete, reinforced concrete and pre-stressed concrete structures in engineering practice. The contributions cover both computational mechanics and computational modelling aspects of the analysis and design of concrete and concrete structures: Multi-scale cement and concrete research: experiments and modelling Aging concrete: from very early ages to decades-long durability Advances in material modelling of plain concrete Analysis of reinforced concrete structures Steel-concrete interaction, fibre-reinforced concrete, and masonry Dynamic behaviour: from seismic retrofit to impact simulation Computational Modelling of Concrete Structures is of special interest to academics and researchers in computational concrete mechanics, as well as industry experts in complex nonlinear simulations of concrete structures.
    URI
    https://library.oapen.org/handle/20.500.12657/101476
    Keywords
    Cohesive Zone Model; computational modelling of concrete materials and masonry; Cement Paste; plasticity; Crack Width; damage mechanics; Fiber Reinforced Concrete; micro-mechanics; Autogenous Shrinkage; fracture mechanics; ASR Gel; multi-physics and multi-scale models; Alkali Silica Reaction; creep; ITZ; reinforced concrete structures; Basic Creep; fibre-matrix interactions; Quasi-brittle Materials; rate dependency; RC Beam; dynamic loading; CDM; F.-J. Ulm; TRC; K. Keremidis; Continuum Damage Mechanics; R.J.-M. Pellenq
    DOI
    10.1201/9781315182964
    ISBN
    9781351726764, 9781351726740, 9781315182964, 9781138741171, 9781351726757, 9781351726764
    Publisher
    Taylor & Francis
    Publisher website
    https://taylorandfrancis.com/
    Publication date and place
    2018
    Imprint
    CRC Press
    Classification
    Civil engineering, surveying and building
    Pages
    1048
    Rights
    https://creativecommons.org/licenses/by-nc-nd/4.0/
    • Imported or submitted locally

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    License

    • If not noted otherwise all contents are available under Attribution 4.0 International (CC BY 4.0)

    Credits

    • logo EU
    • This project received funding from the European Union's Horizon 2020 research and innovation programme under grant agreement No 683680, 810640, 871069 and 964352.

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