STUDY THE IMPACT OF HEAT GENERATION AND VARIABLE VISCOUS EFFECT ON STRETCHING SHEET IN PRESENCE OF MAGNETIC FIELD WITH VARIABLE THERMAL CONDUCTIVITY

Mohammad Shah Alam(1), Mohammad Ali(2) and Dr. Md Abdul Alim(3) 1-2 Asst. Prof. Dept of Mathematics, Chittagong University of Engineering and Technology (CUET), Chittagong, Email: 2 ali.mehidi93@gmail.com 3 Prof. Dept of Mathematics, Bangladesh University of Engineering and Technology (BUET), Dha...

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Main Authors: Shah Alam, Mohammad, Ali, Mohammad, Abdul Alim, Dr. Md
Format: Article
Language:English
Published: R&D Wing, MIST 2020
Subjects:
Online Access:http://hdl.handle.net/123456789/540
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author Shah Alam, Mohammad
Ali, Mohammad
Abdul Alim, Dr. Md
author_browse Abdul Alim, Dr. Md
Ali, Mohammad
Shah Alam, Mohammad
author_facet Shah Alam, Mohammad
Ali, Mohammad
Abdul Alim, Dr. Md
author_sort Shah Alam, Mohammad
collection DSpace
description Mohammad Shah Alam(1), Mohammad Ali(2) and Dr. Md Abdul Alim(3) 1-2 Asst. Prof. Dept of Mathematics, Chittagong University of Engineering and Technology (CUET), Chittagong, Email: 2 ali.mehidi93@gmail.com 3 Prof. Dept of Mathematics, Bangladesh University of Engineering and Technology (BUET), Dhaka
format Article
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language English
publishDate 2020
publishDateRange 2020
publishDateSort 2020
publisher R&D Wing, MIST
publisherStr R&D Wing, MIST
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spelling oai:localhost:123456789-5402020-06-11T04:42:32Z STUDY THE IMPACT OF HEAT GENERATION AND VARIABLE VISCOUS EFFECT ON STRETCHING SHEET IN PRESENCE OF MAGNETIC FIELD WITH VARIABLE THERMAL CONDUCTIVITY Shah Alam, Mohammad Ali, Mohammad Abdul Alim, Dr. Md MHD; stretching sheet; viscosity; Quasi-linearization technique; thermal conductivity. Mohammad Shah Alam(1), Mohammad Ali(2) and Dr. Md Abdul Alim(3) 1-2 Asst. Prof. Dept of Mathematics, Chittagong University of Engineering and Technology (CUET), Chittagong, Email: 2 ali.mehidi93@gmail.com 3 Prof. Dept of Mathematics, Bangladesh University of Engineering and Technology (BUET), Dhaka The aim of the study is to investigate the effect of variable viscosity and thermal conductivity on unsteady MHD boundary layer flow of an incompressible, electrically conducting and viscous fluid over a stretching sheet with heat generation by Quasi-linearization technique. The governing partial differential equations are transformed into ordinary differential equations by using similarity transformation and stretching variable. The governing momentum boundary layer and thermal boundary layer equations with the boundary conditions are transformed into a system of first order ordinary differential equations which are then solved numerically by using Runge-Kutta fourth-fifth order method along with shooting technique. The effects of the flow parameters on the velocity, temperature, shearing stress and rate of heat transfer are computed discussed and have been graphically represented in figures and Table-1 and Table-2 for various values of different parameters. The results presented graphically illustrate that velocity field decrease due to increasing of Magnetic parameter, unsteadiness parameter and heat source parameter and reverse trend arises for the increasing values of variable viscosity parameter and variable thermal conductivity parameter. The temperature field decreases for the effect of variable viscosity parameter and variable thermal conductivity parameter but the temperature field increases for the increasing values of magnetic parameter, unsteadiness parameter, heat source parameter, whereas for the effect of Prandtl number the temperature profile is increased on the surface of the plate and decreased away from the plate. 2020-06-11T04:42:32Z 2020-06-11T04:42:32Z 2015-03 Article 2224-2007 http://hdl.handle.net/123456789/540 en application/pdf R&D Wing, MIST
spellingShingle MHD; stretching sheet; viscosity; Quasi-linearization technique; thermal conductivity.
Shah Alam, Mohammad
Ali, Mohammad
Abdul Alim, Dr. Md
STUDY THE IMPACT OF HEAT GENERATION AND VARIABLE VISCOUS EFFECT ON STRETCHING SHEET IN PRESENCE OF MAGNETIC FIELD WITH VARIABLE THERMAL CONDUCTIVITY
title STUDY THE IMPACT OF HEAT GENERATION AND VARIABLE VISCOUS EFFECT ON STRETCHING SHEET IN PRESENCE OF MAGNETIC FIELD WITH VARIABLE THERMAL CONDUCTIVITY
title_full STUDY THE IMPACT OF HEAT GENERATION AND VARIABLE VISCOUS EFFECT ON STRETCHING SHEET IN PRESENCE OF MAGNETIC FIELD WITH VARIABLE THERMAL CONDUCTIVITY
title_fullStr STUDY THE IMPACT OF HEAT GENERATION AND VARIABLE VISCOUS EFFECT ON STRETCHING SHEET IN PRESENCE OF MAGNETIC FIELD WITH VARIABLE THERMAL CONDUCTIVITY
title_full_unstemmed STUDY THE IMPACT OF HEAT GENERATION AND VARIABLE VISCOUS EFFECT ON STRETCHING SHEET IN PRESENCE OF MAGNETIC FIELD WITH VARIABLE THERMAL CONDUCTIVITY
title_short STUDY THE IMPACT OF HEAT GENERATION AND VARIABLE VISCOUS EFFECT ON STRETCHING SHEET IN PRESENCE OF MAGNETIC FIELD WITH VARIABLE THERMAL CONDUCTIVITY
title_sort study the impact of heat generation and variable viscous effect on stretching sheet in presence of magnetic field with variable thermal conductivity
topic MHD; stretching sheet; viscosity; Quasi-linearization technique; thermal conductivity.
url http://hdl.handle.net/123456789/540
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AT alimohammad studytheimpactofheatgenerationandvariableviscouseffectonstretchingsheetinpresenceofmagneticfieldwithvariablethermalconductivity
AT abdulalimdrmd studytheimpactofheatgenerationandvariableviscouseffectonstretchingsheetinpresenceofmagneticfieldwithvariablethermalconductivity