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Titlebook: Creep and Hygrothermal Effects in Concrete Structures; Zdeněk P. Bažant,Milan Jirásek Textbook 2018 Springer Science+Business Media B.V. 2

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Temperature Effect on Water Diffusion, Hydration Rate, Creep and Shrinkage in research motivated by concrete nuclear power plant structures, and more recently by tall building fires and tunnel fires. First we review the mathematical modeling of heat transfer in concrete, including the effect of heat on cement hydration and the heating caused by early-age hydration. Then w
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Zur Unterscheidung der Formen des Appellsure of hydrated cement and water adsorption on its enormous internal surface. We also present an alternative computational approach in which the microprestress changes are replaced by viscosity variation and show how the microprestress theory is easily incorporated into finite element programs for creep.
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Introduction: How the Theory Evolved and How It Impacts Practiceof sophistication in design calculations, depending on the practical impact. They range from simple and crude quasi-elastic estimates to computations based on experimentally verified theory of greater, though inevitable, complexity.
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Basic Properties of Concrete Creep, Shrinkage, and Dryingncompatible with the elastic modulus. We warn about false extrapolations caused by plots in linear time scale and point out problems due to autogenous shrinkage in modern concretes. Finally, we emphasize the importance of updating long-term predictions on the basis of short-time measurements on structures.
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