Contribution of suction phenomenon and thermal slip effects for radiated hybrid nanoparticles (Al2O3 −Cu/H2O) with stability framework

Author:

Dero Sumera1,Abdelhameed T. N.2,Al-Khaled Kamel3,Lund Liaquat Ali4,Khan Sami Ullah5ORCID,Tlili Iskander6

Affiliation:

1. Institute of Mathematics and Computer Science, University of Sindh, Jamshoro, Pakistan

2. Mathematics Department, Faculty of Science, Beni-Suef University, Beni-Suef 62514, Egypt

3. Department of Mathematics & Statistics, Jordan University of Science and Technology, P.O. Box 3030, Irbid 22110, Jordan

4. KCAET Khairpur Mirs, Sindh Agriculture University, Tandojam Sindh 70060, Pakistan

5. Department of Mathematics, COMSATS University Islamabad, Sahiwal 57000, Pakistan

6. Physics Department, College of Science, Al-Zulfi, Majmaah University, AL-Majmaah 11952, Saudi Arabia

Abstract

This thermal case pronounced the stability framework for stagnation point flow of magnetized alumina and copper nanoparticles with due exponentially shrinking permeable surface. The thermal stability and enhancement of water base liquid had been taken into account with uniform impulsion of hybrid nanomaterials. The induced flow results via exponentially shrinking permeable surface. The similarity transformation simplifies the mathematical model where governing formulated system for hybrid nanofluid is altered into the nondimensional form. A numerical solver called bvp4c is employed in MATLAB software to aid in the problem-solving process, and dual branches have been found. The significance of pertaining parameters associated to the flow model is inspected in view of thermal properties. The findings show that there are two branches for suction strength [Formula: see text] and magnetic strength [Formula: see text]. The bifurcation values [Formula: see text] and [Formula: see text] reduce for the occurrence of dual branches as the solid volume percentages of copper increase. Furthermore, for the upper branch solutions, the skin friction and heat transfer rate rise as [Formula: see text] increases. The temporal stability analysis determines the stability of the dual branches, and it is discovered that only one of them is stable and physically applicable. The presence of suction parameter effectively controls the thermal transportation phenomenon.

Publisher

World Scientific Pub Co Pte Ltd

Subject

Condensed Matter Physics,Statistical and Nonlinear Physics

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