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eISSN: 2581-9615 || CODEN: WJARAI || Impact Factor 8.2 ||  CrossRef DOI

Research and review articles are invited for publication in March 2026 (Volume 29, Issue 3) Submit manuscript

Computational fluid dynamics (CFD) of a three-inlet-Y-junction duct connected to a U-bend: Influence of inlet velocities on air and water flows subjected to cold fronts and turbulence

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  • Computational fluid dynamics (CFD) of a three-inlet-Y-junction duct connected to a U-bend: Influence of inlet velocities on air and water flows subjected to cold fronts and turbulence

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

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

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

Research Article

World Journal of Advanced Research and Reviews, 2025, 27(02), 680-692

Article DOI: 10.30574/wjarr.2025.27.2.2838

DOI url: https://doi.org/10.30574/wjarr.2025.27.2.2838

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

This study presents the movement of air and water flowing in a Y-junction duct with three connected inlets of a U-bend with attention to the impact of cold fronts. Analyses were carried out to observe the behavior of the fluids (air and water) at the duct axis, after the mixing zone (at 70 mm), just upstream of the bend and downstream, at the outlet. The realizable k-ε viscous turbulence model coupled with the energy equation were solved numerically using Ansys Fluent 2024R2. Three cases of cold front formation were studied according to the inlet velocities. An extended cold front appears when the cold fluid enters slowly from inlets 2 and 3, while a high velocity at inlet 1 (case II) can extend the front to outlet CS3. The U-bend acts as a turbulence amplifier, but the response of the fluid in question (air and water) depends both on their physical properties (density, kinematic viscosity, and inertia) and their physicochemical characteristics. The complex dynamics of these flows are explained not only by mechanical phenomena but also by intermolecular interactions: water (a polar molecule), capable of forming hydrogen bonds and susceptible to cold fronts, reacts differently from air, a mixture of non-polar gases with weak intermolecular interactions.

Ansys Fluent; Air and water movement; CFD; Heat and mass transfer; realizable k-ε turbulence model; T-Junction; U-bend

https://wjarr.com/sites/default/files/fulltext_pdf/WJARR-2025-2838.pdf

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Pape Tamsir Ndiaye, Goumbo Ndiaye, Omar Ngor Thiam, Momath Ndiaye and Oumar Drame. Computational fluid dynamics (CFD) of a three-inlet-Y-junction duct connected to a U-bend: Influence of inlet velocities on air and water flows subjected to cold fronts and turbulence. World Journal of Advanced Research and Reviews, 2025, 27(2), 680-692. Article DOI: https://doi.org/10.30574/wjarr.2025.27.2.2838

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