Stefan blowing and slip effects on unsteady nano fluid transport past a shrinking sheet: multiple solutions

The aim of a present article is to investigate the laminar unsteady two‐dimensional boundary layer flow of a nanofluid with Stefan blowing and slip effect. First, governing boundary layer equations are converted in the ordinary form of the differential equations (ODEs) from partial differential equa...

Full description

Bibliographic Details
Main Authors: Dero, Sumera, Uddin, Md Jashim, Mohd Rohni, Azizah
Format: Article
Published: 2019
Subjects:
_version_ 1825805488366813184
author Dero, Sumera
Uddin, Md Jashim
Mohd Rohni, Azizah
author_facet Dero, Sumera
Uddin, Md Jashim
Mohd Rohni, Azizah
author_sort Dero, Sumera
collection UUM
description The aim of a present article is to investigate the laminar unsteady two‐dimensional boundary layer flow of a nanofluid with Stefan blowing and slip effect. First, governing boundary layer equations are converted in the ordinary form of the differential equations (ODEs) from partial differential equations using appropriate coordinate transformations. The obtained ODEs are then solved by applying a shooting method with the Runge‐Kutta fourth order method by implementation of the Maple software. The influences of different controlling dimensionless parameters over the dimensionless velocity, temperature, concentration, friction factor, local heat as well as mass transfer have been discussed and represented by plots. It is found that there exist dual solutions for the different applied nanofluid parameters along with the blowing parameter. The results reveal that by increasing the values of the Brownian motion (Nb), thermophoresis (Nt) and blowing parameters (fw), the skin friction increases (decreases) in the first (second) solution
first_indexed 2024-07-04T06:33:09Z
format Article
id uum-26530
institution Universiti Utara Malaysia
last_indexed 2024-07-04T06:33:09Z
publishDate 2019
record_format eprints
spelling uum-265302019-10-29T01:09:14Z https://repo.uum.edu.my/id/eprint/26530/ Stefan blowing and slip effects on unsteady nano fluid transport past a shrinking sheet: multiple solutions Dero, Sumera Uddin, Md Jashim Mohd Rohni, Azizah QA75 Electronic computers. Computer science The aim of a present article is to investigate the laminar unsteady two‐dimensional boundary layer flow of a nanofluid with Stefan blowing and slip effect. First, governing boundary layer equations are converted in the ordinary form of the differential equations (ODEs) from partial differential equations using appropriate coordinate transformations. The obtained ODEs are then solved by applying a shooting method with the Runge‐Kutta fourth order method by implementation of the Maple software. The influences of different controlling dimensionless parameters over the dimensionless velocity, temperature, concentration, friction factor, local heat as well as mass transfer have been discussed and represented by plots. It is found that there exist dual solutions for the different applied nanofluid parameters along with the blowing parameter. The results reveal that by increasing the values of the Brownian motion (Nb), thermophoresis (Nt) and blowing parameters (fw), the skin friction increases (decreases) in the first (second) solution 2019 Article PeerReviewed Dero, Sumera and Uddin, Md Jashim and Mohd Rohni, Azizah (2019) Stefan blowing and slip effects on unsteady nano fluid transport past a shrinking sheet: multiple solutions. Heat Transfer-Asian Research, 48 (6). pp. 2047-2066. ISSN 10992871 http://doi.org/10.1002/htj.21470 doi:10.1002/htj.21470 doi:10.1002/htj.21470
spellingShingle QA75 Electronic computers. Computer science
Dero, Sumera
Uddin, Md Jashim
Mohd Rohni, Azizah
Stefan blowing and slip effects on unsteady nano fluid transport past a shrinking sheet: multiple solutions
title Stefan blowing and slip effects on unsteady nano fluid transport past a shrinking sheet: multiple solutions
title_full Stefan blowing and slip effects on unsteady nano fluid transport past a shrinking sheet: multiple solutions
title_fullStr Stefan blowing and slip effects on unsteady nano fluid transport past a shrinking sheet: multiple solutions
title_full_unstemmed Stefan blowing and slip effects on unsteady nano fluid transport past a shrinking sheet: multiple solutions
title_short Stefan blowing and slip effects on unsteady nano fluid transport past a shrinking sheet: multiple solutions
title_sort stefan blowing and slip effects on unsteady nano fluid transport past a shrinking sheet multiple solutions
topic QA75 Electronic computers. Computer science
work_keys_str_mv AT derosumera stefanblowingandslipeffectsonunsteadynanofluidtransportpastashrinkingsheetmultiplesolutions
AT uddinmdjashim stefanblowingandslipeffectsonunsteadynanofluidtransportpastashrinkingsheetmultiplesolutions
AT mohdrohniazizah stefanblowingandslipeffectsonunsteadynanofluidtransportpastashrinkingsheetmultiplesolutions