Please use this identifier to cite or link to this item: http://hdl.handle.net/11189/10250
Title: Enhancing and comparing shrinkage prediction models for High-Strength Concrete with and without admixtures
Authors: Noordien, Rahima 
Sutherland, Andrew P.N. 
Kumar, Pallav 
Keywords: Drying shrinkage;Autogenous shrinkage;High strength concrete;Shrinkage prediction models
Issue Date: 2024
Publisher: IOP Publishing Ltd
Source: Noordien, R., Sutherland, A.P.N. & Pallav, K. 2024. Enhancing and comparing shrinkage prediction models for High-Strength Concrete with and without admixtures. Engineering Research Express, 6: 1-22. [https://doi.org/10.1088/2631-8695/ad35a7]
Journal: Engineering Research Express 
Abstract: This study aimed to improve and compare the parameterization of three prominent shrinkage prediction models—RILEM B4, MC 2010, and WITS—tailored specifically for High-Strength Concrete (HSC), both with and without the inclusion of admixtures. The dataset used for refining model parameters consisted of 220 experiments related to drying shrinkage and 342 experiments concerning autogenous shrinkage. Model performance evaluation involved various statistical metrics applied to the entire HSC dataset, subdatasets, and distinct time periods of shrinkage (0–99 days, 100–199 days, 200–499 days, and ≥500 days). The statistical indicators included Root Mean Square Error (RMSE), R-squared adjusted (R2adj), Akaike’s Information Criterion (AIC), and the overall coefficient of variation (C.o.Vall). Modified models exhibited significantly improved predictions compared to the original models, with most predictions falling within ±20% of the measured shrinkages. For HSC drying shrinkage, the original model accuracy ranked as WITS, RILEM B4, and MC 2010. However, after parameter adjustments, WITS, MC 2010, and RILEM B4 were the best-performing models. Conversely, for HSC autogenous shrinkage predictions, the RILEM B4 model surpassed the MC 2010 model, demonstrating superior accuracy and reliability in forecasting this specific type of shrinkage behaviour within High-Strength Concrete.
URI: http://hdl.handle.net/11189/10250
ISSN: 2631-8695 (Online)
DOI: https://doi.org/10.1088/2631-8695/ad35a7
Appears in Collections:Eng - Journal articles (DHET subsidised)

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