Concrete remains a widely used material in construction. As structures become more optimised, a deeper understanding of the rheology of the concrete mixture is necessary. This paper aims to numerically simulate the flow of fresh concrete in the L-box apparatus, with the objective of gaining insights into its rheological behaviour and predicting its properties. The fresh concrete flowing through the L-box test is simulated from the moment that the gate is lifted until the stoppage and the material takes its final shape. The flow in this tool occurs on a free surface. In this work, a three-dimensional model has been developed using the computational fluid dynamics technique for simulation. The flow behaviour of fresh concrete was assumed to be non-Newtonian following the Bingham law, characterised by a non-linear shear stress–shear rate ratio, yield stress and plastic viscosity. A set of numerical simulations by varying workability were conducted. Furthermore, a parametric study was conducted to examine the impact of introduced parameters in the concrete flow, including the effect of yield stress, viscosity and density.
Article navigation
1 December 2023
Research Article|
July 31 2023
Numerical simulation of fresh concrete flow in the L-box test using computational fluid dynamics
Raoudha Sassi
;
Raoudha Sassi
PhD Researcher, Laboratory of Civil Engineering (LGC), National Engineering School of Tunis (ENIT), Tunis El Manar University, Tunis, Tunisia (corresponding author: raoudha.sassi@enit.utm.tn)
Search for other works by this author on:
Ahmed Jelidi;
Ahmed Jelidi
Lecturer, Laboratory of Civil Engineering (LGC), National Engineering School of Tunis (ENIT), Tunis El Manar University, Tunis, Tunisia
Search for other works by this author on:
Sami Montassar
Sami Montassar
Lecturer, Laboratory of Civil Engineering (LGC), National Engineering School of Tunis (ENIT), Tunis El Manar University, Tunis, Tunisia
Search for other works by this author on:
Publisher: Emerald Publishing
Received:
January 30 2023
Accepted:
June 27 2023
Online ISSN: 1751-763X
Print ISSN: 0024-9831
Emerald Publishing Limited: All rights reserved
2023
Magazine of Concrete Research (2023) 75 (23): 1189–1201.
Article history
Received:
January 30 2023
Accepted:
June 27 2023
Citation
Sassi R, Jelidi A, Montassar S (2023), "Numerical simulation of fresh concrete flow in the L-box test using computational fluid dynamics". Magazine of Concrete Research, Vol. 75 No. 23 pp. 1189–1201, doi: https://doi.org/10.1680/jmacr.23.00032
Download citation file:
New and popular articles
Suggested Reading
Effect of borax on early hydration and rheological properties of reactivated cementitious material
Advances in Cement Research (August,2018)
Baffle orientation and geometry effects on turbulent heat transfer of a constant property incompressible fluid flow inside a rectangular channel
International Journal of Numerical Methods for Heat & Fluid Flow (June,2019)
Wall slip effects in Rayleigh–Bénard convection of viscoplastic materials
Multidiscipline Modeling in Materials and Structures (October,2023)
Effects of complex boundary conditions on natural convection of a viscoplastic fluid
International Journal of Numerical Methods for Heat & Fluid Flow (July,2019)
Analysis of the relationship between the L-box test and the yield stress of fresh concrete: an analytical approach
Advances in Cement Research (April,2023)
Related Chapters
RHEOLOGICAL STUDY ON THE EFFECT OF TEMPERATURE ON SUPERPLASTICIZED CEMENT PASTES
Admixtures - Enhancing Concrete Performance: Proceedings of the International Conference held at the University of Dundee, Scotland, UK on 6 July 2005
RHEOLOGICAL DESIGN OF HIGHLY FLUID CONCRETE: THE FUTURE FOR DESIGNING CEMENTITIOUS PRODUCTS?
Cement Combinations for Durable Concrete: Proceedings of the International Conference held at the University of Dundee, Scotland, UK on 5–7 July 2005
Steelwork
Temporary Works Part Two: Further Principles of Design and Construction
Recommended for you
These recommendations are informed by your reading behaviors and indicated interests.
