STUDY ON THE THERMAL CHARACTERISTICS OF HYBRID NANOFLUID

The study on stability of nanofluids is of utmost importance in order to to fully utilize its potentials especially the enhanced thermodynamic properties of the nanofluids. This study focuses on achieving the stability of nanofluids by changing the ratio of hybrid nanoparticles which are Magnesium O...

Full description

Saved in:
Bibliographic Details
Main Author: SELLADURAI, SANGGKAR
Format: Final Year Project
Language:English
Published: IRC 2019
Online Access:http://utpedia.utp.edu.my/20053/1/FYP%202%20REPORT%20SANGGKAR_22068.pdf
http://utpedia.utp.edu.my/20053/
Tags: Add Tag
No Tags, Be the first to tag this record!
id my-utp-utpedia.20053
record_format eprints
spelling my-utp-utpedia.200532019-12-13T09:18:27Z http://utpedia.utp.edu.my/20053/ STUDY ON THE THERMAL CHARACTERISTICS OF HYBRID NANOFLUID SELLADURAI, SANGGKAR The study on stability of nanofluids is of utmost importance in order to to fully utilize its potentials especially the enhanced thermodynamic properties of the nanofluids. This study focuses on achieving the stability of nanofluids by changing the ratio of hybrid nanoparticles which are Magnesium Oxide (MgO), Zinc Oxide (ZnO), Aluminium Oxide (Al2O3) and multiwall carbon nanotube (MWCNT) nanoparticles in thermal oil. Sedimentation studies on the nanofluid suspensions with different concentration of nanoparticles (0.25, 0.5, and 1 wt. %) and base fluid (thermal oil) are to be carried out to compare the stability of the nanofluid. However, the stability of nanoparticles in the fluid have been one of the main issues that researcher are concerning with. The instability of nanoparticle cause sedimentation due to agglomeration of nanoparticles. Therefore, enhancement of nanofluid stability has been the main focus to improve the effectiveness of nanofluid applications. In this study, thermal oil is used as the base fluid and Sorbitane Trioleate (Span 85) is used as surfactant. The result proven that the nanofluid are more effective than thermal oil. The structure of the nanoparticles were observed by using the FESEM techniques. The TGA analysis is carried out and found that the decomposition rate of nanofluids are slower compared to pure thermal oil. The DSC analysis have also been carried out and it shows that nanofluids has less specific heat compared to pure thermal oil. IRC 2019-05 Final Year Project NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/20053/1/FYP%202%20REPORT%20SANGGKAR_22068.pdf SELLADURAI, SANGGKAR (2019) STUDY ON THE THERMAL CHARACTERISTICS OF HYBRID NANOFLUID. IRC, Universiti Teknologi PETRONAS. (Submitted)
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Electronic and Digitized Intellectual Asset
url_provider http://utpedia.utp.edu.my/
language English
description The study on stability of nanofluids is of utmost importance in order to to fully utilize its potentials especially the enhanced thermodynamic properties of the nanofluids. This study focuses on achieving the stability of nanofluids by changing the ratio of hybrid nanoparticles which are Magnesium Oxide (MgO), Zinc Oxide (ZnO), Aluminium Oxide (Al2O3) and multiwall carbon nanotube (MWCNT) nanoparticles in thermal oil. Sedimentation studies on the nanofluid suspensions with different concentration of nanoparticles (0.25, 0.5, and 1 wt. %) and base fluid (thermal oil) are to be carried out to compare the stability of the nanofluid. However, the stability of nanoparticles in the fluid have been one of the main issues that researcher are concerning with. The instability of nanoparticle cause sedimentation due to agglomeration of nanoparticles. Therefore, enhancement of nanofluid stability has been the main focus to improve the effectiveness of nanofluid applications. In this study, thermal oil is used as the base fluid and Sorbitane Trioleate (Span 85) is used as surfactant. The result proven that the nanofluid are more effective than thermal oil. The structure of the nanoparticles were observed by using the FESEM techniques. The TGA analysis is carried out and found that the decomposition rate of nanofluids are slower compared to pure thermal oil. The DSC analysis have also been carried out and it shows that nanofluids has less specific heat compared to pure thermal oil.
format Final Year Project
author SELLADURAI, SANGGKAR
spellingShingle SELLADURAI, SANGGKAR
STUDY ON THE THERMAL CHARACTERISTICS OF HYBRID NANOFLUID
author_facet SELLADURAI, SANGGKAR
author_sort SELLADURAI, SANGGKAR
title STUDY ON THE THERMAL CHARACTERISTICS OF HYBRID NANOFLUID
title_short STUDY ON THE THERMAL CHARACTERISTICS OF HYBRID NANOFLUID
title_full STUDY ON THE THERMAL CHARACTERISTICS OF HYBRID NANOFLUID
title_fullStr STUDY ON THE THERMAL CHARACTERISTICS OF HYBRID NANOFLUID
title_full_unstemmed STUDY ON THE THERMAL CHARACTERISTICS OF HYBRID NANOFLUID
title_sort study on the thermal characteristics of hybrid nanofluid
publisher IRC
publishDate 2019
url http://utpedia.utp.edu.my/20053/1/FYP%202%20REPORT%20SANGGKAR_22068.pdf
http://utpedia.utp.edu.my/20053/
_version_ 1739832708427677696
score 13.223943