On the Enhancement of Thermal Transport of Kerosene Oil Mixed Tio2 and Sio2 Across Riga Wedge
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Date
2022
Journal Title
Journal ISSN
Volume Title
Publisher
Elsevier
Open Access Color
GOLD
Green Open Access
No
OpenAIRE Downloads
OpenAIRE Views
Publicly Funded
No
Abstract
Efficient thermal transportation in compact heat density gadgets is a prevailing issue to be addressed. The flow of a mono nanofluid (SiO2/Kerosene oil) and hybrid nanofluid (TiO2 + SiO2/ Kerosene oil) is studied in context of Riga wedge. The basic purpose of this work pertains to improve thermal conductivity of base liquid with inclusions of nano-entities. The hybrid nanofluid flow over Riga wedge is new aspect of this work. The concentration of new species is assumed to constitute the base liquid to be non-Newtonian. The fundamental formulation of the concentration laws of mass, momentum and energy involve partial derivatives. The associated boundary conditions are taken in to account. Similarity variables are utilized to transform the leading set of equations into ordinary differential form. Shooting procedure combined with Runge-Kutta method is harnessed to attain numerical outcomes. The computational process is run in matlab script. It is seen that the velocity component f'(eta) goes upward with exceeding inputs of modified Hartmann number Mh and it slows down when non-dimensional material parameter alpha(h), takes large values. Also, Nusselt number - theta'(0) is enhanced with developing values of Eckert number Ec and Biot number B-i.
Description
Keywords
Maxwell Fluid, Heat Source, Hybrid Nanofluid, Riga Wedge, Runge-Kutta Method, Heat source, Hybrid nanofluid, Runge-Kutta method, Maxwell fluid, TA1-2040, Engineering (General). Civil engineering (General), Riga wedge
Fields of Science
0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology, 01 natural sciences, 0104 chemical sciences
Citation
Yahya, Asmat Ullah;...et.al. (2022). "On the enhancement of thermal transport of Kerosene oil mixed TiO2and SiO2across Riga wedge ∗", Case Studies in Thermal Engineering, Vol.34.
WoS Q
Q1
Scopus Q
Q1

OpenCitations Citation Count
18
Source
Case Studies in Thermal Engineering
Volume
34
Issue
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End Page
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CrossRef : 20
Scopus : 17
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Mendeley Readers : 11
SCOPUS™ Citations
21
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Web of Science™ Citations
20
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3
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