Thermal progress of a non-Newtonian hybrid nanofluid flow on a permeable Riga plate with temporal stability analysis
Flow and heat transfer phenomena involving hybrid nanofluids has been used in a variety of technological and commercial applications. Thus, the flow behavior with thermal progress of a second grade hybrid Cu-Al2O3/CH3OH nanofluid towards a permeable Riga/EMHD plate is investigated. The governing mod...
| Main Authors: | , , , , , |
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| Format: | Article |
| Published: |
Elsevier
2022
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| Online Access: | http://psasir.upm.edu.my/id/eprint/103712/ |
| _version_ | 1848864087696474112 |
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| author | Khashi'ie, Najiyah Safwa Waini, Iskandar Mohd Kasim, Abdul Rahman Zainal, Nurul Amira Md Arifin, Norihan Pop, Ioan |
| author_facet | Khashi'ie, Najiyah Safwa Waini, Iskandar Mohd Kasim, Abdul Rahman Zainal, Nurul Amira Md Arifin, Norihan Pop, Ioan |
| author_sort | Khashi'ie, Najiyah Safwa |
| building | UPM Institutional Repository |
| collection | Online Access |
| description | Flow and heat transfer phenomena involving hybrid nanofluids has been used in a variety of technological and commercial applications. Thus, the flow behavior with thermal progress of a second grade hybrid Cu-Al2O3/CH3OH nanofluid towards a permeable Riga/EMHD plate is investigated. The governing model is reduced to a set of ordinary differential equations, which are then solved in Matlab software using the bvp4c application. The solutions for the skin friction coefficient and the local Nusselt number have been established and discussed. Two solutions are available when the parameters are employed within the ranges of 007 and
while the suction parameter and Prandtl number is fixed at
and (CH3OH). However, only the first solution is validated as the real physical solution based on the positive smallest eigenvalue from the stability analysis. The use of hybrid nanoparticles in combination with the suction effect has been exposed to have a role in the thermal growth of this non-Newtonian working fluid. The addition of volumetric concentration of hybrid nanoparticles extends the critical value approximately 1.4-1.6% such that and. Meanwhile, only second grade parameter has a significantly negative impact on the thermal performance. |
| first_indexed | 2025-11-15T13:43:14Z |
| format | Article |
| id | upm-103712 |
| institution | Universiti Putra Malaysia |
| institution_category | Local University |
| last_indexed | 2025-11-15T13:43:14Z |
| publishDate | 2022 |
| publisher | Elsevier |
| recordtype | eprints |
| repository_type | Digital Repository |
| spelling | upm-1037122023-05-02T06:11:43Z http://psasir.upm.edu.my/id/eprint/103712/ Thermal progress of a non-Newtonian hybrid nanofluid flow on a permeable Riga plate with temporal stability analysis Khashi'ie, Najiyah Safwa Waini, Iskandar Mohd Kasim, Abdul Rahman Zainal, Nurul Amira Md Arifin, Norihan Pop, Ioan Flow and heat transfer phenomena involving hybrid nanofluids has been used in a variety of technological and commercial applications. Thus, the flow behavior with thermal progress of a second grade hybrid Cu-Al2O3/CH3OH nanofluid towards a permeable Riga/EMHD plate is investigated. The governing model is reduced to a set of ordinary differential equations, which are then solved in Matlab software using the bvp4c application. The solutions for the skin friction coefficient and the local Nusselt number have been established and discussed. Two solutions are available when the parameters are employed within the ranges of 007 and while the suction parameter and Prandtl number is fixed at and (CH3OH). However, only the first solution is validated as the real physical solution based on the positive smallest eigenvalue from the stability analysis. The use of hybrid nanoparticles in combination with the suction effect has been exposed to have a role in the thermal growth of this non-Newtonian working fluid. The addition of volumetric concentration of hybrid nanoparticles extends the critical value approximately 1.4-1.6% such that and. Meanwhile, only second grade parameter has a significantly negative impact on the thermal performance. Elsevier 2022 Article PeerReviewed Khashi'ie, Najiyah Safwa and Waini, Iskandar and Mohd Kasim, Abdul Rahman and Zainal, Nurul Amira and Md Arifin, Norihan and Pop, Ioan (2022) Thermal progress of a non-Newtonian hybrid nanofluid flow on a permeable Riga plate with temporal stability analysis. Chinese Journal of Physics, 77. 279 - 290. ISSN 0577-9073; ESSN: 2309-9097 https://www.sciencedirect.com/science/article/pii/S0577907322000739 10.1016/j.cjph.2022.03.019 |
| spellingShingle | Khashi'ie, Najiyah Safwa Waini, Iskandar Mohd Kasim, Abdul Rahman Zainal, Nurul Amira Md Arifin, Norihan Pop, Ioan Thermal progress of a non-Newtonian hybrid nanofluid flow on a permeable Riga plate with temporal stability analysis |
| title | Thermal progress of a non-Newtonian hybrid nanofluid flow on a permeable Riga plate with temporal stability analysis |
| title_full | Thermal progress of a non-Newtonian hybrid nanofluid flow on a permeable Riga plate with temporal stability analysis |
| title_fullStr | Thermal progress of a non-Newtonian hybrid nanofluid flow on a permeable Riga plate with temporal stability analysis |
| title_full_unstemmed | Thermal progress of a non-Newtonian hybrid nanofluid flow on a permeable Riga plate with temporal stability analysis |
| title_short | Thermal progress of a non-Newtonian hybrid nanofluid flow on a permeable Riga plate with temporal stability analysis |
| title_sort | thermal progress of a non-newtonian hybrid nanofluid flow on a permeable riga plate with temporal stability analysis |
| url | http://psasir.upm.edu.my/id/eprint/103712/ http://psasir.upm.edu.my/id/eprint/103712/ http://psasir.upm.edu.my/id/eprint/103712/ |