Enhancement of the heat transfer in radiator with louvered fin by using graphene-based hybrid nanofluids

Newly developed hybrid nanofluids can enhance heat transfer performance of various automotive appliances. Improved thermophysical properties of this hybrid nanoparticles when used as coolants will enhance the effectiveness of the car radiators with improved engine cooling system. The present study i...

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Main Authors: M., Sandhya, D., Ramasamy, K., Sudhakar, K., Kadirgama, W. S. W., Harun
Format: Conference or Workshop Item
Language:English
Published: IOP Publishing 2021
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/31996/
http://umpir.ump.edu.my/id/eprint/31996/1/Enhancement%20of%20the%20heat%20transfer%20in%20radiator%20with%20louvered%20fin.pdf
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author M., Sandhya
D., Ramasamy
K., Sudhakar
K., Kadirgama
W. S. W., Harun
author_facet M., Sandhya
D., Ramasamy
K., Sudhakar
K., Kadirgama
W. S. W., Harun
author_sort M., Sandhya
building UMP Institutional Repository
collection Online Access
description Newly developed hybrid nanofluids can enhance heat transfer performance of various automotive appliances. Improved thermophysical properties of this hybrid nanoparticles when used as coolants will enhance the effectiveness of the car radiators with improved engine cooling system. The present study involves the simulation-based analysis of thermal enhancement of Graphene based Hybrid Nanofluids in a Car radiator. System analysis is performed considering single tube component in the radiator for pattern development. CFD analysis is conducted using ANSYS FLUENT module. Graphene/Crystal Nanocellulose hybrid (Graphene + CNC) nanoparticles are suspended in water & ethylene glycol base fluids (40:60) at 0.01%,0.05%,0.1% &0.2 % volume concentration considering at 3-7 LPM inlet mass flow rate. The effect of various volume concentration, inlet temperature and flow rate on Pressure, Enthalpy, Entropy, Heat transfer coefficient, and Heat transfer rate has been examined by simulation. The results indicate that when using a Louvered fin in a radiator, Maximum enhancement of 60% in heat transfer rate, 53% increase of heat transfer coefficient, 65% increase in pressure are achieved for Graphene with CNC hybrid nanofluids when compared with Graphene based nanofluids. Using this type of hybrid coolants along with louvered fin in radiator can significantly improve the heat transfer performance of radiators.
first_indexed 2025-11-15T03:04:40Z
format Conference or Workshop Item
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institution Universiti Malaysia Pahang
institution_category Local University
language English
last_indexed 2025-11-15T03:04:40Z
publishDate 2021
publisher IOP Publishing
recordtype eprints
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spelling ump-319962022-07-04T03:29:16Z http://umpir.ump.edu.my/id/eprint/31996/ Enhancement of the heat transfer in radiator with louvered fin by using graphene-based hybrid nanofluids M., Sandhya D., Ramasamy K., Sudhakar K., Kadirgama W. S. W., Harun TJ Mechanical engineering and machinery TL Motor vehicles. Aeronautics. Astronautics Newly developed hybrid nanofluids can enhance heat transfer performance of various automotive appliances. Improved thermophysical properties of this hybrid nanoparticles when used as coolants will enhance the effectiveness of the car radiators with improved engine cooling system. The present study involves the simulation-based analysis of thermal enhancement of Graphene based Hybrid Nanofluids in a Car radiator. System analysis is performed considering single tube component in the radiator for pattern development. CFD analysis is conducted using ANSYS FLUENT module. Graphene/Crystal Nanocellulose hybrid (Graphene + CNC) nanoparticles are suspended in water & ethylene glycol base fluids (40:60) at 0.01%,0.05%,0.1% &0.2 % volume concentration considering at 3-7 LPM inlet mass flow rate. The effect of various volume concentration, inlet temperature and flow rate on Pressure, Enthalpy, Entropy, Heat transfer coefficient, and Heat transfer rate has been examined by simulation. The results indicate that when using a Louvered fin in a radiator, Maximum enhancement of 60% in heat transfer rate, 53% increase of heat transfer coefficient, 65% increase in pressure are achieved for Graphene with CNC hybrid nanofluids when compared with Graphene based nanofluids. Using this type of hybrid coolants along with louvered fin in radiator can significantly improve the heat transfer performance of radiators. IOP Publishing 2021-02-15 Conference or Workshop Item PeerReviewed pdf en cc_by http://umpir.ump.edu.my/id/eprint/31996/1/Enhancement%20of%20the%20heat%20transfer%20in%20radiator%20with%20louvered%20fin.pdf M., Sandhya and D., Ramasamy and K., Sudhakar and K., Kadirgama and W. S. W., Harun (2021) Enhancement of the heat transfer in radiator with louvered fin by using graphene-based hybrid nanofluids. In: IOP Conference Series: Materials Science and Engineering, 1st International Colloquium on Computational and Experimental Mechanics (ICCEM 2020) , 25 - 26 June 2020 , Selangor, Malaysia. pp. 1-14., 1062 (012014). ISSN 1757-8981 (Print), 1757-899X (Online) (Published) https://doi.org/10.1088/1757-899X/1062/1/012014
spellingShingle TJ Mechanical engineering and machinery
TL Motor vehicles. Aeronautics. Astronautics
M., Sandhya
D., Ramasamy
K., Sudhakar
K., Kadirgama
W. S. W., Harun
Enhancement of the heat transfer in radiator with louvered fin by using graphene-based hybrid nanofluids
title Enhancement of the heat transfer in radiator with louvered fin by using graphene-based hybrid nanofluids
title_full Enhancement of the heat transfer in radiator with louvered fin by using graphene-based hybrid nanofluids
title_fullStr Enhancement of the heat transfer in radiator with louvered fin by using graphene-based hybrid nanofluids
title_full_unstemmed Enhancement of the heat transfer in radiator with louvered fin by using graphene-based hybrid nanofluids
title_short Enhancement of the heat transfer in radiator with louvered fin by using graphene-based hybrid nanofluids
title_sort enhancement of the heat transfer in radiator with louvered fin by using graphene-based hybrid nanofluids
topic TJ Mechanical engineering and machinery
TL Motor vehicles. Aeronautics. Astronautics
url http://umpir.ump.edu.my/id/eprint/31996/
http://umpir.ump.edu.my/id/eprint/31996/
http://umpir.ump.edu.my/id/eprint/31996/1/Enhancement%20of%20the%20heat%20transfer%20in%20radiator%20with%20louvered%20fin.pdf