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Title: Prediction of Temperature Distribution in High-Strength Concrete Using Hydration Model

Author(s): Ki-Bong Park, Nam-Yong Jee, In-Seok Yoon, and Han-Seung Lee

Publication: Materials Journal

Volume: 105

Issue: 2

Appears on pages(s): 180-186

Keywords: high-strength concrete; hydration model; neural network.

DOI: 10.14359/19759

Date: 3/1/2008

Abstract:
This paper presents the development of a computational program to predict the temperature history in high-strength concrete members. The numerical simulation procedure starts with a hydration model that describes the evolution of cement paste microstructure as a function of the changing composition of the hydration products. The coefficients for the hydration model were determined with an artificial neural network technique. Temperature distribution and history in concrete members considering thermal conductivity and radiant heat were calculated based on a three-dimensional mesh. Predicted temperature history curves were compared with experimental data and a good correlation was found.


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