Radiative transport of MHD stagnation point flow of chemically reacting Carreau nanofluid due to radially stretched sheet

The flow of Carreau nanofluid with generation/absorption and magnetic field can be valuable for modifying solar energy production. In this work, we extended the study of the MHD boundary layer flow of Carreau nanofluid with heat generation/absorption close to a stagnation point over the radially ext...

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Main Authors: Abdul Kareem Abdul Jawwad, Muhammad Jawad, Kottakkaran Sooppy Nisar, Muhammad Saleem, Bassam Hasanain
Format: Article
Language:English
Published: Elsevier 2023-04-01
Series:Alexandria Engineering Journal
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1110016823001229
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author Abdul Kareem Abdul Jawwad
Muhammad Jawad
Kottakkaran Sooppy Nisar
Muhammad Saleem
Bassam Hasanain
author_facet Abdul Kareem Abdul Jawwad
Muhammad Jawad
Kottakkaran Sooppy Nisar
Muhammad Saleem
Bassam Hasanain
author_sort Abdul Kareem Abdul Jawwad
collection DOAJ
description The flow of Carreau nanofluid with generation/absorption and magnetic field can be valuable for modifying solar energy production. In this work, we extended the study of the MHD boundary layer flow of Carreau nanofluid with heat generation/absorption close to a stagnation point over the radially extending plate. Likewise, the features of radiation and magnetic field with convective boundary conditions are considered. Further, keeping in view the importance of chemical reactions, their effect is also incorporated during the modelling process. For motivation, the impact of thermophoresis and Brownian motion has been taken into account. Using appropriate similarity transformation, we converted nonlinear governing partial differential equations of Carreau nanofluid into a couple of nonlinear ODEs. Using a recognized shooting technique and the MATLAB bvp4c solver and Mathematica ND-solve built-in command, we were able to get numerical results for these modeled ODEs. Through graphs and tables, the effects of different physical parameters like magnetic, Weissenberg number, Brownian motion, thermal radiation, thermophoresis, Prandtl number, chemical reaction, and rate of heat generation/absorption on non-dimensional velocity, temperature, and concentration profile are discussed.
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spelling doaj.art-b0ee81c9849543efacb8f4f8990a24852023-04-13T04:26:22ZengElsevierAlexandria Engineering Journal1110-01682023-04-0169699714Radiative transport of MHD stagnation point flow of chemically reacting Carreau nanofluid due to radially stretched sheetAbdul Kareem Abdul Jawwad0Muhammad Jawad1Kottakkaran Sooppy Nisar2Muhammad Saleem3Bassam Hasanain4Industrial Engineering Department, College of Engineering-Rabigh, King Abdul-Aziz University, Jeddah, Saudi ArabiaDepartment of Mathematics, The University of Faisalabad, Faisalabad 38000, PakistanDepartment of Mathematics, College of Arts and Sciences, Wadi Aldawaser, Prince Sattam bin Abdulaziz University, Saudi Arabia; School of Technology, Woxsen University, Hyderabad 502345, Telangana State, India; Corresponding author at: Department of Mathematics, College of Arts and Sciences, Wadi Aldawaser, Prince Sattam bin Abdulaziz University, Saudi Arabia.Industrial Engineering Department, College of Engineering-Rabigh, King Abdul-Aziz University, Jeddah, Saudi ArabiaIndustrial Engineering Department, College of Engineering-Rabigh, King Abdul-Aziz University, Jeddah, Saudi ArabiaThe flow of Carreau nanofluid with generation/absorption and magnetic field can be valuable for modifying solar energy production. In this work, we extended the study of the MHD boundary layer flow of Carreau nanofluid with heat generation/absorption close to a stagnation point over the radially extending plate. Likewise, the features of radiation and magnetic field with convective boundary conditions are considered. Further, keeping in view the importance of chemical reactions, their effect is also incorporated during the modelling process. For motivation, the impact of thermophoresis and Brownian motion has been taken into account. Using appropriate similarity transformation, we converted nonlinear governing partial differential equations of Carreau nanofluid into a couple of nonlinear ODEs. Using a recognized shooting technique and the MATLAB bvp4c solver and Mathematica ND-solve built-in command, we were able to get numerical results for these modeled ODEs. Through graphs and tables, the effects of different physical parameters like magnetic, Weissenberg number, Brownian motion, thermal radiation, thermophoresis, Prandtl number, chemical reaction, and rate of heat generation/absorption on non-dimensional velocity, temperature, and concentration profile are discussed.http://www.sciencedirect.com/science/article/pii/S1110016823001229Radially stretching sheetCarreau fluidWeissenberg NumberMathematicaChemical reactionMATLAB
spellingShingle Abdul Kareem Abdul Jawwad
Muhammad Jawad
Kottakkaran Sooppy Nisar
Muhammad Saleem
Bassam Hasanain
Radiative transport of MHD stagnation point flow of chemically reacting Carreau nanofluid due to radially stretched sheet
Alexandria Engineering Journal
Radially stretching sheet
Carreau fluid
Weissenberg Number
Mathematica
Chemical reaction
MATLAB
title Radiative transport of MHD stagnation point flow of chemically reacting Carreau nanofluid due to radially stretched sheet
title_full Radiative transport of MHD stagnation point flow of chemically reacting Carreau nanofluid due to radially stretched sheet
title_fullStr Radiative transport of MHD stagnation point flow of chemically reacting Carreau nanofluid due to radially stretched sheet
title_full_unstemmed Radiative transport of MHD stagnation point flow of chemically reacting Carreau nanofluid due to radially stretched sheet
title_short Radiative transport of MHD stagnation point flow of chemically reacting Carreau nanofluid due to radially stretched sheet
title_sort radiative transport of mhd stagnation point flow of chemically reacting carreau nanofluid due to radially stretched sheet
topic Radially stretching sheet
Carreau fluid
Weissenberg Number
Mathematica
Chemical reaction
MATLAB
url http://www.sciencedirect.com/science/article/pii/S1110016823001229
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