Ultrasonication an intensifying tool for preparation of stable nanofluids and study the time influence on distinct properties of graphene nanofluids – a systematic overview

Optimum ultrasonication time will lead to the better performance for heat transfer in addition to preparation methods and thermal properties of the nanofluids. Nano particles are dispersed in base fluids like water (water-based fluids), glycols (glycol base fluids) &oils at different mass or vol...

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Main Authors: Sandhya, Madderla, D., Ramasamy, K., Sudhakar, K., Kadirgama, W. S. W., Harun
Format: Article
Language:English
Published: Elsevier Ltd 2021
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/31414/
http://umpir.ump.edu.my/id/eprint/31414/1/Ultrasonication%20an%20intensifying%20tool%20for%20preparation%20of%20stable%20nanofluids.pdf
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author Sandhya, Madderla
D., Ramasamy
K., Sudhakar
K., Kadirgama
W. S. W., Harun
author_facet Sandhya, Madderla
D., Ramasamy
K., Sudhakar
K., Kadirgama
W. S. W., Harun
author_sort Sandhya, Madderla
building UMP Institutional Repository
collection Online Access
description Optimum ultrasonication time will lead to the better performance for heat transfer in addition to preparation methods and thermal properties of the nanofluids. Nano particles are dispersed in base fluids like water (water-based fluids), glycols (glycol base fluids) &oils at different mass or volume fraction by using different preparation techniques. Significant preparation technique can enhance the stability, effects various parameters & thermo-physical properties of fluids. Agglomeration of the dispersed nano particles will lead to declined thermal performance, thermal conductivity, and viscosity. For better dispersion and breaking down the clusters, Ultrasonication method is the highly influential approach. Sonication hour is unique for different nano fluids depending on their response to several considerations. In this review, systematic investigations showing effect on various physical and thermal properties based on ultrasonication/ sonication time are illustrated. In this analysis it is found that increased power or time of ideal sonication increases the dispersion, leading to higher stable fluids, decreased particle size, higher thermal conductivity, and lower viscosity values. Employing the ultrasonic probe is substantially more effective than ultrasonic bath devices. Low ultrasonication power and time provides best outcome. Various sonication time periods by various research are summarized with respect to the different thermophysical properties. This is first review explaining sonication period influence on thermophysical properties of graphene nanofluids.
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spelling ump-314142022-07-04T03:09:16Z http://umpir.ump.edu.my/id/eprint/31414/ Ultrasonication an intensifying tool for preparation of stable nanofluids and study the time influence on distinct properties of graphene nanofluids – a systematic overview Sandhya, Madderla D., Ramasamy K., Sudhakar K., Kadirgama W. S. W., Harun TJ Mechanical engineering and machinery Optimum ultrasonication time will lead to the better performance for heat transfer in addition to preparation methods and thermal properties of the nanofluids. Nano particles are dispersed in base fluids like water (water-based fluids), glycols (glycol base fluids) &oils at different mass or volume fraction by using different preparation techniques. Significant preparation technique can enhance the stability, effects various parameters & thermo-physical properties of fluids. Agglomeration of the dispersed nano particles will lead to declined thermal performance, thermal conductivity, and viscosity. For better dispersion and breaking down the clusters, Ultrasonication method is the highly influential approach. Sonication hour is unique for different nano fluids depending on their response to several considerations. In this review, systematic investigations showing effect on various physical and thermal properties based on ultrasonication/ sonication time are illustrated. In this analysis it is found that increased power or time of ideal sonication increases the dispersion, leading to higher stable fluids, decreased particle size, higher thermal conductivity, and lower viscosity values. Employing the ultrasonic probe is substantially more effective than ultrasonic bath devices. Low ultrasonication power and time provides best outcome. Various sonication time periods by various research are summarized with respect to the different thermophysical properties. This is first review explaining sonication period influence on thermophysical properties of graphene nanofluids. Elsevier Ltd 2021-05 Article PeerReviewed pdf en cc_by_nc_nd_4 http://umpir.ump.edu.my/id/eprint/31414/1/Ultrasonication%20an%20intensifying%20tool%20for%20preparation%20of%20stable%20nanofluids.pdf Sandhya, Madderla and D., Ramasamy and K., Sudhakar and K., Kadirgama and W. S. W., Harun (2021) Ultrasonication an intensifying tool for preparation of stable nanofluids and study the time influence on distinct properties of graphene nanofluids – a systematic overview. Ultrasonics Sonochemistry, 73 (105479). pp. 1-16. ISSN 1350-4177. (Published) https://doi.org/10.1016/j.ultsonch.2021.105479 https://doi.org/10.1016/j.ultsonch.2021.105479
spellingShingle TJ Mechanical engineering and machinery
Sandhya, Madderla
D., Ramasamy
K., Sudhakar
K., Kadirgama
W. S. W., Harun
Ultrasonication an intensifying tool for preparation of stable nanofluids and study the time influence on distinct properties of graphene nanofluids – a systematic overview
title Ultrasonication an intensifying tool for preparation of stable nanofluids and study the time influence on distinct properties of graphene nanofluids – a systematic overview
title_full Ultrasonication an intensifying tool for preparation of stable nanofluids and study the time influence on distinct properties of graphene nanofluids – a systematic overview
title_fullStr Ultrasonication an intensifying tool for preparation of stable nanofluids and study the time influence on distinct properties of graphene nanofluids – a systematic overview
title_full_unstemmed Ultrasonication an intensifying tool for preparation of stable nanofluids and study the time influence on distinct properties of graphene nanofluids – a systematic overview
title_short Ultrasonication an intensifying tool for preparation of stable nanofluids and study the time influence on distinct properties of graphene nanofluids – a systematic overview
title_sort ultrasonication an intensifying tool for preparation of stable nanofluids and study the time influence on distinct properties of graphene nanofluids – a systematic overview
topic TJ Mechanical engineering and machinery
url http://umpir.ump.edu.my/id/eprint/31414/
http://umpir.ump.edu.my/id/eprint/31414/
http://umpir.ump.edu.my/id/eprint/31414/
http://umpir.ump.edu.my/id/eprint/31414/1/Ultrasonication%20an%20intensifying%20tool%20for%20preparation%20of%20stable%20nanofluids.pdf