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Computational Fluids Dynamics of air and water flows subjected to turbulence and confronted with cold fronts in a three-inlet-T-junction duct followed by two 90-degree elbows connected by a straight section of adjustable length (C-shaped elbow)

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  • Computational Fluids Dynamics of air and water flows subjected to turbulence and confronted with cold fronts in a three-inlet-T-junction duct followed by two 90-degree elbows connected by a straight section of adjustable length (C-shaped elbow)

Pape Tamsir Ndiaye 1, *, Goumbo Ndiaye 2, Momath Ndiaye 1, 3, Oumar Drame 1, 4 and Omar Ngor Thiam 1, 4

1 Fluid Mechanics and Transfer Laboratory, Department of Physics, Sciences and Technologies Faculty, Cheikh Anta DIOP University, Dakar-Fann, Senegal.

2 The Water, Energy, Environment and Industrial Processes Laboratory of the Polytech Higher School, Cheikh Anta Diop University, Dakar, Senegal

3 Department of the Ufr Hydraulics, Rural Engineering, Machinery and Renewable Energy,University of Sine Saloum Elhadji Ibrahima NIASS, Kaolack, Senegal.

4 Research Group on Solar Energy and Transfers (GREST), Sciences and Technologies Faculty, Cheikh Anta DIOP University, Dakar-Fann, Senegal.

Research Article

World Journal of Advanced Research and Reviews, 2025, 27(02), 693-705

Article DOI: 10.30574/wjarr.2025.27.2.2839

DOI url: https://doi.org/10.30574/wjarr.2025.27.2.2839

Received on 30 June 2025; revised on 09 August 2025; accepted on 11 August 2025

This study examines air and water flows in a three-inlet T-junction duct followed by two 90° elbows connected by a straight section of adjustable length (C-shaped elbow), with a particular focus on the impact of the straight section  length between the two 90° elbows. The analysis focuses on the behavior of the fluids (air and water) along the duct axis (x, y, z=0), after the mixing zone (at 70 mm), upstream of the first elbow, and at the duct outlet. The numerical solution is based on the realizable k-Ꜫ viscous turbulence model coupled with the energy equation, implemented in Ansys Fluent 2024R2. Three straight section length cases were studied: Case I (L= 20 mm), Case II (L=50 mm), and Case III (L=100 mm). According to the results obtained, the c-bend, consisting of two 90° elbows connected by the straight section, intensifies the turbulence within the flow, with effects depending on the thermophysical characteristics of the fluid (density, thermal conductivity, kinematic viscosity, etc.). The straight section connecting the two 90° elbows moderates the combined dynamic and thermal disturbances of the successive elbows. If it is too short, it aggravates the disturbances; if properly dimensioned, it acts as a stabilizing buffer zone, improving the thermal and hydraulic efficiency of the duct.

Ansys Fluent; Air and water movement; C-elbow; CFD;  Heat and mass transfer; realizable k-ε turbulence model; Straight section; T-Junction;

https://journalwjarr.com/sites/default/files/fulltext_pdf/WJARR-2025-2839.pdf

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Pape Tamsir Ndiaye, Goumbo Ndiaye, Momath Ndiaye, Oumar Drame and Omar Ngor Thiam. Computational Fluids Dynamics of air and water flows subjected to turbulence and confronted with cold fronts in a three-inlet-T-junction duct followed by two 90-degree elbows connected by a straight section of adjustable length (C-shaped elbow). World Journal of Advanced Research and Reviews, 2025, 27(02), 693-705. Article DOI: https://doi.org/10.30574/wjarr.2025.27.2.2839.

Copyright © 2025 Author(s) retain the copyright of this article. This article is published under the terms of the Creative Commons Attribution Liscense 4.0

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