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The application of two-phase model to assess the nanofluid entropy generation in serpentine and double-serpentine heatsinks.

Authors :
Wang, Dan
Ali, Masood Ashraf
Sharma, Kamal
Kh, Teeba Ismail
Alali, Abdulrhman Fahmi
Almohana, Abdulaziz Ibrahim
Almojil, Sattam Fahad
Source :
Engineering Analysis with Boundary Elements. Feb2023, Vol. 147, p39-50. 12p.
Publication Year :
2023

Abstract

The frictional and thermal entropy generation rates (S ˙ f r and S ˙ t h) of two heatsinks with serpentine (Conf. A) and double serpentine (Conf. B) channels with water/silver Nano fluid (NF) were numerically investigated. The results demonstrated that the augmentation of nanoparticle concentration (φ) from 0% to 1% leads to decrease S ˙ t h by 6.36% and 3.51% in Conf. A and Conf. B, respectively, for Re=500. The escalation of Re from 500 to 2000 increases this percentages to 9.93% and 7.51%, respectively. Also, the increase of Re from 500 to 2000 at a constant φ reduces S ˙ t h by 63% and 68% in Conf. A and Conf. B, respectively, due to enhance the heat dissipation. Moreover, the increasing of φ from 0% to 1% decreases S ˙ f r by 12.41% in both configurations and at four studied Res due to decreasing the NF velocity. Besides, the escalation of Re from 500-2000 intensifies S ˙ f r nearly by 62% and 67% in Conf. A and Conf. B, respectively. The entropy contour plots reveal that S ˙ f r intensifies near the turn regions of the serpentine channels. Also, S ˙ t h is intensifies at the entrance of heatsink channels due to the high temperature gradient at these points. Conversely, S ˙ f r escalates at the exit of the channels due to intensification of the vortexes formed at the turn parts and along the serpentine channel. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09557997
Volume :
147
Database :
Academic Search Index
Journal :
Engineering Analysis with Boundary Elements
Publication Type :
Periodical
Accession number :
160963375
Full Text :
https://doi.org/10.1016/j.enganabound.2022.10.020