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  • Holistic Modeling of Ultra-High PerformanceConcrete Production Process: SynergizingMix Design, Fresh Concrete Properties, andCuring Conditions

    Farzad Rezazadeh P., Axel Dürrbaum, Gregor Zimmermann, Andreas Kroll

    Kapitel/Beitrag aus dem Buch: Schulte, H et al. 2023. Proceedings – 33. Workshop Computational Intelligence: Berlin, 23.-24. November 2023.

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    Concrete, the second most consumed resource worldwide after water [1], plays
    a fundamental role in construction. However, modeling the production process
    of concrete is challenging due to the incompletely understood physical and
    chemical relationships among its ingredients and various influencing factors,
    and the scarcity of data. Current models predominantly only rely on mix
    design (recipe) data, often overlooking the properties of fresh concrete, the
    interactions that result from curing conditions, and disturbances. This paper
    introduces a holistic view that integrates mix design, fresh concrete properties,
    and curing conditions to enhance predictive models for ultra-high performance
    concrete (UHPC) quality. This analysis highlights the significant effect of
    average power consumption, fresh concrete temperature, and curing storage
    conditions on the quality of concrete.

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    Empfohlene Zitierweise für das Kapitel/den Beitrag
    Rezazadeh P., F et al. 2023. Holistic Modeling of Ultra-High PerformanceConcrete Production Process: SynergizingMix Design, Fresh Concrete Properties, andCuring Conditions. In: Schulte, H et al (eds.), Proceedings – 33. Workshop Computational Intelligence: Berlin, 23.-24. November 2023. Karlsruhe: KIT Scientific Publishing. DOI: https://doi.org/10.58895/ksp/1000162754-15
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    This chapter distributed under the terms of the Creative Commons Attribution + ShareAlike 4.0 license. Copyright is retained by the author(s)

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    Veröffentlicht am 18. November 2023

    DOI
    https://doi.org/10.58895/ksp/1000162754-15