Numerical study on performance enhancement of the fin and tube heat exchanger using different nanoparticle shapes

Author(s):  
Mohammad Shafiey Dehaj ◽  
Hassan Hajabdollahi
Author(s):  
Lahcene Bellahcene ◽  
Djamel Sahel ◽  
Aissa Yousfi

The aim of this work is to investigate the forced convective heat transfer phenomena and fluid flows of water-based Al2O3 nanofluids in the baffled shell and tubes heat exchanger (STHE). Water as a hot fluid flows in the side of the tubes, and Al2O3 nanofluids as cooling fluid flow in the shell side. Numerical investigations have been carried out based on the continuity, momentum, and energy equations which are solved by using the finite element method with the help of the COMSOL 5.4 CFD software. The obtained results were presented by average Nusselt number, streamlines, isotherms, and various physical parameters which are a volumetric fraction of nanoparticles (1%? Cv ?3%). The results are found that the heat transfer increases with the rise of inlet velocity and volume fraction. In addition, the presence of baffles inside tubular heat exchangers can create a better mixture of fluids which is augmenting heat transfer execution. The choice of these parameters is important to get the maximum improvement of heat transfer with minimum entropy consumption.


Author(s):  
Abduljalil A. Al-Abidi ◽  
Sohif Mat ◽  
K. Sopian ◽  
M.Y. Sulaiman ◽  
Abdulrahman Th Mohammad

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