Viscous dissipation effects on hybrid nanofluid flow over a non-linearly shrinking sheet with power-law velocity

This research intends to investigate the effect of the nonlinearity of the surface velocity on the hybrid nanofluid flow behavior. Here, the total composition of Al2O3 (alumina) as well as Cu (copper) volume fractions, are implemented in a one-to-one ratio and then dispersed in water. The similarity...

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Main Authors: Waini, Iskandar, Alabdulhady, Sumayyah, Ishak, Anuar, Pop, Ioan
Format: Article
Language:English
Published: Elsevier Ltd 2023
Online Access:http://eprints.utem.edu.my/id/eprint/27803/2/022501008202417212.pdf
http://eprints.utem.edu.my/id/eprint/27803/
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spelling my.utem.eprints.278032024-10-09T16:04:21Z http://eprints.utem.edu.my/id/eprint/27803/ Viscous dissipation effects on hybrid nanofluid flow over a non-linearly shrinking sheet with power-law velocity Waini, Iskandar Alabdulhady, Sumayyah Ishak, Anuar Pop, Ioan This research intends to investigate the effect of the nonlinearity of the surface velocity on the hybrid nanofluid flow behavior. Here, the total composition of Al2O3 (alumina) as well as Cu (copper) volume fractions, are implemented in a one-to-one ratio and then dispersed in water. The similarity equations are gained employing a similarity transformation, which is programmed in MATLAB software. The dual solutions are attainable for certain ranges with respect to the mass flux parameter S and the power-law index n. Also, the turning point occurs in the region of S<0 and n>1. Besides, the rise of n led to reduce the skin friction as well as the heat transfer coefficients with 39.44 % and 11.71 % reduction, respectively. Moreover, 14.39 % reduction of the heat transfer rate is observed in the presence of viscous dissipation (Eckert number). It is found that only the first solution is stable as time progresses. Generally, this study gives scientists and engineers a starting point for predicting how to control the parameters to achieve the best results for relevant practical applications. Elsevier Ltd 2023-10 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/27803/2/022501008202417212.pdf Waini, Iskandar and Alabdulhady, Sumayyah and Ishak, Anuar and Pop, Ioan (2023) Viscous dissipation effects on hybrid nanofluid flow over a non-linearly shrinking sheet with power-law velocity. Heliyon, 9 (10). pp. 1-12. ISSN 2405-8440 https://pdf.sciencedirectassets.com/313379/1-s2.0-S2405844023X00115/1-s2.0-S2405844023081185/main.pdf?X-Amz-Security-Token=IQoJb3JpZ2luX2VjEDsaCXVzLWVhc3QtMSJIMEYCIQDnjLsQCJqF2OPLlLLCOSA7iLrun9lilk3iMWveISqljAIhALK1xwKygbY%2Bfwf6ZrkK6eByRWjroQptT3UNVf1w0nrtKrMFCFMQBRoMMDU5MDAzNTQ2ODY1IgyhH%2BqSb3oNT%2FUKD48qkAUD%2Flt4w7vNSwoq4JQN4WHIInzlDIToZXhX%2B1N0HA%2FBf6ikm2gNjXCmr%2Ba%2B2%2FVI0OFwowH%2BsWFolf3AxVjQhPkgACxUW2dP9a1sze6H53xjxoPA4TD2YzBS1XLqS%2BGjd2OmK8Z%2FM%2FZLa%2BKn%2FBRLB8FJyhBUJ4NfHOQdZL3UsV3oySbTmEsihP%2FE8Dty5hCT9ffoPaagpfOddUmbn0zNmku%2F6UG21ZrDc9muQWM9c0hnXSDzfkuOa3qBUvP0LJrCnvfmMS6lfEO%2BkQjNUgdYne2VdVGIDv2Vwaq2HDJl4c0GHdMkp4sSQRZVLKtRpDMdkdroth5x6BgKnrUTad580HgRtPr8nfO3YiZt%2BhFhn37W6DoWg6oPPXhshb30b3cktRG%2BVoGKjzgJZm6xtGtf5dgBmfTwnUMCD46IaPcrARhlfBDa4t9f1PCHbw%2By9yXRpdsOI5Yt0IHA4OLpGJjw%2B%2BmTexnAh5vbcoWI5gBw0OCrA8r2CO0Owi7fhdAg9%2BqU99P933eZpbmD3b6oPyLj9uiWgqThbP0a0vXrtBVcQvqiuN56f%2BVLMVh4VCCJLL3c3ftL9GPHHJlfSyB0RnAgd7WTngYTkgK%2F6uS%2B%2BUGQwOy6s93ERLzu4fNAdUUDgl4KkRYgVQLud3vufTIGSyW8K4o4aB%2B3HQhen07u%2FoNMx1xzhAzAPVMBeoEQoIj8LGcrHH57wBrxO0RX5%2FM4gXhzcg2A3ReYt4mMOI5zvRTs%2BfU%2FAbCkWHekgnH0bojMh1x6HCeSCpk2c8AiPGjkYLWHOnGNI2Yff%2FkJt%2FjLju492u0sXguurzSTltgjLayLxObFR0U4mHU84r1Q8Cs3UyFVI8hWfUVTubeNXsxcjvw%2FDJqtKTD91sS2BjqwARiWP9nplA2y3F1BR7HeXiWjuJLZHOk6f40FT7R5hLFH3eWOlYLWBXfIfAe0UgH%2Fv79QiNTdGw0VccukOZcr081WjX5NBQt8bctPmg4Wu%2BCNh0MNRSBek90jPd5uFMpU4khXIzKFX0yTMCXnIHUB2e6eM4%2FXlfI0Kx1wEd8B%2F3OUDOUDqCZ2fLbYUTPGSZtCEWR4Yp4F2R0MfTgR4hVYMjGc%2FyLH1GyvI96GTupIwkPe&X-Amz-Algorithm=AWS4-HMAC-SHA256&X-Amz-Date=20240830T032840Z&X-Amz-SignedHeaders=host&X-Amz-Expires=300&X-Amz-Credential=ASIAQ3PHCVTYYQZNVEWV%2F20240830%2Fus-east-1%2Fs3%2Faws4_request&X-Amz-Signature=47bcc5eb142931dee9c50577916d9e7d0e3e1d82201f072288ff42f3a7000c17&hash=44015f421e47977bb49ca7521e6d36f5e3cf64ea66afeec8d576e698c4e33c58&host=68042c943591013ac2b2430a89b270f6af2c76d8dfd086a07176afe7c76c2c61&pii=S2405844023081185&tid=spdf-d2deaece-cf33-4605-ab8f-ec8d909834f6&sid=c84a47eb2651734dad2a0839a3ef97e44797gxrqb&type=client&tsoh=d3d3LnNjaWVuY2VkaXJlY3QuY29t&ua=031d5a02055503545d&rr=8bb1b12e597d13db&cc=my 10.1016/j.heliyon.2023.e20910
institution Universiti Teknikal Malaysia Melaka
building UTEM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
url_provider http://eprints.utem.edu.my/
language English
description This research intends to investigate the effect of the nonlinearity of the surface velocity on the hybrid nanofluid flow behavior. Here, the total composition of Al2O3 (alumina) as well as Cu (copper) volume fractions, are implemented in a one-to-one ratio and then dispersed in water. The similarity equations are gained employing a similarity transformation, which is programmed in MATLAB software. The dual solutions are attainable for certain ranges with respect to the mass flux parameter S and the power-law index n. Also, the turning point occurs in the region of S<0 and n>1. Besides, the rise of n led to reduce the skin friction as well as the heat transfer coefficients with 39.44 % and 11.71 % reduction, respectively. Moreover, 14.39 % reduction of the heat transfer rate is observed in the presence of viscous dissipation (Eckert number). It is found that only the first solution is stable as time progresses. Generally, this study gives scientists and engineers a starting point for predicting how to control the parameters to achieve the best results for relevant practical applications.
format Article
author Waini, Iskandar
Alabdulhady, Sumayyah
Ishak, Anuar
Pop, Ioan
spellingShingle Waini, Iskandar
Alabdulhady, Sumayyah
Ishak, Anuar
Pop, Ioan
Viscous dissipation effects on hybrid nanofluid flow over a non-linearly shrinking sheet with power-law velocity
author_facet Waini, Iskandar
Alabdulhady, Sumayyah
Ishak, Anuar
Pop, Ioan
author_sort Waini, Iskandar
title Viscous dissipation effects on hybrid nanofluid flow over a non-linearly shrinking sheet with power-law velocity
title_short Viscous dissipation effects on hybrid nanofluid flow over a non-linearly shrinking sheet with power-law velocity
title_full Viscous dissipation effects on hybrid nanofluid flow over a non-linearly shrinking sheet with power-law velocity
title_fullStr Viscous dissipation effects on hybrid nanofluid flow over a non-linearly shrinking sheet with power-law velocity
title_full_unstemmed Viscous dissipation effects on hybrid nanofluid flow over a non-linearly shrinking sheet with power-law velocity
title_sort viscous dissipation effects on hybrid nanofluid flow over a non-linearly shrinking sheet with power-law velocity
publisher Elsevier Ltd
publishDate 2023
url http://eprints.utem.edu.my/id/eprint/27803/2/022501008202417212.pdf
http://eprints.utem.edu.my/id/eprint/27803/
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