On Hybrid Nanofluid Yamada-Ota and Xue Flow Models in a Rotating Channel With Modified Fourier Law
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Date
2021
Journal Title
Journal ISSN
Volume Title
Publisher
Nature Portfolio
Open Access Color
GOLD
Green Open Access
Yes
OpenAIRE Downloads
OpenAIRE Views
Publicly Funded
No
Abstract
The present study analyzes the comparison of the Xue and Yamada-Ota models for a hybrid nanoliquid flow in porous media occurring amidst a rotating channel with surface catalyzed reaction. Here, the hybrid nanofluid flow is studied under the effect of Cattaneo Christov (C-C) heat flux and homogenous heterogeneous (Homo-Hetero) chemical reaction with entropy generation minimization analysis. The assumptions of the viscosity of hybrid nanomaterial fluid and variable thermal conductivity are added characteristics to the inimitability of the flow model. Two kinds of nanoparticles, namely single-wall carbon nanotubes and multi-wall carbon nanotubes with ethylene glycol (EG) as the base fluid are considered. Carbon nanotubes possess diverse applications in daily life including energy storage, drug delivery, cancer treatment, tissue generation, platelet activation, magnetic force microscopy, and microwave absorption, etc. Similarity transformations are utilized to translate the modeled problem into the coupled ordinary differential equations. This system of ordinary differential equations is addressed numerically. The graphical outcomes are scrutinized by utilizing the MATLAB software bvp4c function. The results revealed that the velocity profile decreases for the higher rotation parameter while increases for the escalated slip parameter. Furthermore, the fluid concentration and temperature are on the decline for higher surface catalyzed reaction and thermal relaxation parameters respectively.
Description
Malik, Muhammad/0000-0002-5301-4145
ORCID
Keywords
Heat Transfer Enhancement in Nanofluids, Science, Biomedical Engineering, FOS: Mechanical engineering, Nanofluid, FOS: Medical engineering, Mechanics, Quantum mechanics, Article, Carbon nanotube, Nanofluids, Engineering, Nanoparticle, Differential equation, Solar Air Heater Heat Transfer Analysis, Nanotechnology, Fluid Flow, FOS: Nanotechnology, Mechanical Engineering, Physics, Q, Microchannel Heat Transfer and Cooling Technology, R, Materials science, Physical Sciences, Medicine, Thermodynamics, Ordinary differential equation
Fields of Science
0301 basic medicine, 03 medical and health sciences, 0303 health sciences
Citation
Ramzan, Muhammad...et al. (2021). "On hybrid nanofluid Yamada-Ota and Xue flow models in a rotating channel with modified Fourier law", Scientific Reports, Vol. 11, No. 1.
WoS Q
Q1
Scopus Q
Q1

OpenCitations Citation Count
16
Source
Scientific Reports
Volume
11
Issue
1
Start Page
End Page
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Citations
CrossRef : 4
Scopus : 18
PubMed : 2
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Mendeley Readers : 9
SCOPUS™ Citations
19
checked on Feb 24, 2026
Web of Science™ Citations
18
checked on Feb 24, 2026
Page Views
6
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