Case study of thermal and solutal aspects on non-Newtonian Prandtl hybrid nanofluid flowing via stretchable sheet: Multiple slip solution

The effect of multiple slip boundary conditions is one more important physical parameter on the flow investigation and have been studied in this analysis. Further, the effect of Ohmic heating and varying chemical reaction on non-Newtonian Prandtl hybrid nanofluid with water based nanofluids to an ex...

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Main Authors: MD. Shamshuddin, Zehba Raizah, Nevzat Akkurt, Vishwambhar S. Patil, Sayed M. Eldin
Format: Article
Language:English
Published: Elsevier 2023-09-01
Series:Case Studies in Thermal Engineering
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2214157X23004926
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author MD. Shamshuddin
Zehba Raizah
Nevzat Akkurt
Vishwambhar S. Patil
Sayed M. Eldin
author_facet MD. Shamshuddin
Zehba Raizah
Nevzat Akkurt
Vishwambhar S. Patil
Sayed M. Eldin
author_sort MD. Shamshuddin
collection DOAJ
description The effect of multiple slip boundary conditions is one more important physical parameter on the flow investigation and have been studied in this analysis. Further, the effect of Ohmic heating and varying chemical reaction on non-Newtonian Prandtl hybrid nanofluid with water based nanofluids to an extending of leading edge was also investigated to this current analysis. An inclined magnetic field is introduced to fluid flow to regulate the fluid stream. Hybrid nanomaterial is synthesized by the dispersion of Cu and Cofe2O4 nanoparticles in Prandtl fluid. All chemical science specifications of nanofluid are measured as constant. Due to the nanofluid particles motion, the fluid concentration is inspected underneath chemical implications. A mathematical model is developed by assuming the flow as incompressible and purely cartesian coordinate system and appropriate non-dimensional variables are introduced for problem simplifications and dimensional analysis. The scheme for semi analytical study named Homotopy Analysis Method (HAM) is implied to get solutions to the equations. The procedure is then displayed pictorially where fluid velocity, temperature and concertation against various pertinent parameters are examined. It was found that, the Concentration field profiles have been shown to deteriorate because molecule diffusivity reduces as the chemical reaction parameter rises in both cases. In order to maintain thermal balance management in tiny heat density equipment and gadgets, current research may also be helpful in enhancing the thermal efficiency of heat exchangers.
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spelling doaj.art-bbb5533371a343729724ffb0fd90a6a62023-09-01T05:01:18ZengElsevierCase Studies in Thermal Engineering2214-157X2023-09-0149103186Case study of thermal and solutal aspects on non-Newtonian Prandtl hybrid nanofluid flowing via stretchable sheet: Multiple slip solutionMD. Shamshuddin0Zehba Raizah1Nevzat Akkurt2Vishwambhar S. Patil3Sayed M. Eldin4Department of Mathematics, School of Sciences, SR University, Warangal, 506371, Telangana State, IndiaDepartment of Mathematics, College of Science, Abha, King Khalid University, Saudi ArabiaDepartment of Mechanical Engineering, Munzur University, Tunceli, 62000, TurkeyDepartment of Mathematics, Govt. College of Engineering, Karad, IndiaCenter of Research, Faculty of Engineering, Future University in Egypt New Cairo, New Cairo, Egypt; Corresponding author.The effect of multiple slip boundary conditions is one more important physical parameter on the flow investigation and have been studied in this analysis. Further, the effect of Ohmic heating and varying chemical reaction on non-Newtonian Prandtl hybrid nanofluid with water based nanofluids to an extending of leading edge was also investigated to this current analysis. An inclined magnetic field is introduced to fluid flow to regulate the fluid stream. Hybrid nanomaterial is synthesized by the dispersion of Cu and Cofe2O4 nanoparticles in Prandtl fluid. All chemical science specifications of nanofluid are measured as constant. Due to the nanofluid particles motion, the fluid concentration is inspected underneath chemical implications. A mathematical model is developed by assuming the flow as incompressible and purely cartesian coordinate system and appropriate non-dimensional variables are introduced for problem simplifications and dimensional analysis. The scheme for semi analytical study named Homotopy Analysis Method (HAM) is implied to get solutions to the equations. The procedure is then displayed pictorially where fluid velocity, temperature and concertation against various pertinent parameters are examined. It was found that, the Concentration field profiles have been shown to deteriorate because molecule diffusivity reduces as the chemical reaction parameter rises in both cases. In order to maintain thermal balance management in tiny heat density equipment and gadgets, current research may also be helpful in enhancing the thermal efficiency of heat exchangers.http://www.sciencedirect.com/science/article/pii/S2214157X23004926Prandtl Hybrid nanofluidNanoparticlesOhmic heatingVarying reactionHomotopy analysis method
spellingShingle MD. Shamshuddin
Zehba Raizah
Nevzat Akkurt
Vishwambhar S. Patil
Sayed M. Eldin
Case study of thermal and solutal aspects on non-Newtonian Prandtl hybrid nanofluid flowing via stretchable sheet: Multiple slip solution
Case Studies in Thermal Engineering
Prandtl Hybrid nanofluid
Nanoparticles
Ohmic heating
Varying reaction
Homotopy analysis method
title Case study of thermal and solutal aspects on non-Newtonian Prandtl hybrid nanofluid flowing via stretchable sheet: Multiple slip solution
title_full Case study of thermal and solutal aspects on non-Newtonian Prandtl hybrid nanofluid flowing via stretchable sheet: Multiple slip solution
title_fullStr Case study of thermal and solutal aspects on non-Newtonian Prandtl hybrid nanofluid flowing via stretchable sheet: Multiple slip solution
title_full_unstemmed Case study of thermal and solutal aspects on non-Newtonian Prandtl hybrid nanofluid flowing via stretchable sheet: Multiple slip solution
title_short Case study of thermal and solutal aspects on non-Newtonian Prandtl hybrid nanofluid flowing via stretchable sheet: Multiple slip solution
title_sort case study of thermal and solutal aspects on non newtonian prandtl hybrid nanofluid flowing via stretchable sheet multiple slip solution
topic Prandtl Hybrid nanofluid
Nanoparticles
Ohmic heating
Varying reaction
Homotopy analysis method
url http://www.sciencedirect.com/science/article/pii/S2214157X23004926
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