An Analytic Study on the Enhancement of Heat Transfer with Nanofluid

The article studies the problem of boundary layer fluid flow for two dimensional steady and incompressible    hybrid nanofluids over the nonlinear stretching surface. The problem is analysed for the distribution of velocity, temperature, and concentration profile influenced by the parameters taken f...

Full description

Saved in:
Bibliographic Details
Main Authors: Bhuvaneswari SUBRAMANIAN, Elatharasan GOVINDARAJ, Mukesh Kumar PERIYASAMY CHOKKAYEE AMMAL
Format: Article
Language:English
Published: Kaunas University of Technology 2025-02-01
Series:Medžiagotyra
Subjects:
Online Access:https://matsc.ktu.lt/index.php/MatSc/article/view/34179
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1832087873448312832
author Bhuvaneswari SUBRAMANIAN
Elatharasan GOVINDARAJ
Mukesh Kumar PERIYASAMY CHOKKAYEE AMMAL
author_facet Bhuvaneswari SUBRAMANIAN
Elatharasan GOVINDARAJ
Mukesh Kumar PERIYASAMY CHOKKAYEE AMMAL
author_sort Bhuvaneswari SUBRAMANIAN
collection DOAJ
description The article studies the problem of boundary layer fluid flow for two dimensional steady and incompressible    hybrid nanofluids over the nonlinear stretching surface. The problem is analysed for the distribution of velocity, temperature, and concentration profile influenced by the parameters taken for study. The pertinent parameters analysed in the boundary value problem are magnetic, non-linear stretching parameter, Prandtl number, radiation, Brownian, thermophoresis. The governing sets of PDE’s are converted to a set of ODES using the similarity transformations. The numerical results are obtained by RK algorithm techniques. The study portrays the results for skin friction and Nusselt number for varying the parametric values. The interpretation of results is done graphically and in tabular format. The detailed parametric study is explored for the enhancement of heat transfer, the influence of the parameters on velocity, temperature, and volume fraction of the nanofluid, skin friction coefficient, and Nusselt number. The wide applications of the problem taken for the study where the control of complex parametric influence in heat transfer is applied in the field of energy recovery, biomedical, and industrial systems in the present global scenario.
format Article
id doaj-art-f26a3190ecb34bde91d6516f79be920f
institution Kabale University
issn 1392-1320
2029-7289
language English
publishDate 2025-02-01
publisher Kaunas University of Technology
record_format Article
series Medžiagotyra
spelling doaj-art-f26a3190ecb34bde91d6516f79be920f2025-02-06T04:35:26ZengKaunas University of TechnologyMedžiagotyra1392-13202029-72892025-02-0110.5755/j02.ms.3417939433An Analytic Study on the Enhancement of Heat Transfer with NanofluidBhuvaneswari SUBRAMANIAN0https://orcid.org/0000-0003-4573-6524Elatharasan GOVINDARAJ1https://orcid.org/0000-0001-9541-4633Mukesh Kumar PERIYASAMY CHOKKAYEE AMMAL2https://orcid.org/0000-0002-5403-9424University College of EngineeringUniversity College of EngineeringUniversity College of EngineeringThe article studies the problem of boundary layer fluid flow for two dimensional steady and incompressible    hybrid nanofluids over the nonlinear stretching surface. The problem is analysed for the distribution of velocity, temperature, and concentration profile influenced by the parameters taken for study. The pertinent parameters analysed in the boundary value problem are magnetic, non-linear stretching parameter, Prandtl number, radiation, Brownian, thermophoresis. The governing sets of PDE’s are converted to a set of ODES using the similarity transformations. The numerical results are obtained by RK algorithm techniques. The study portrays the results for skin friction and Nusselt number for varying the parametric values. The interpretation of results is done graphically and in tabular format. The detailed parametric study is explored for the enhancement of heat transfer, the influence of the parameters on velocity, temperature, and volume fraction of the nanofluid, skin friction coefficient, and Nusselt number. The wide applications of the problem taken for the study where the control of complex parametric influence in heat transfer is applied in the field of energy recovery, biomedical, and industrial systems in the present global scenario.https://matsc.ktu.lt/index.php/MatSc/article/view/34179heat transferhybrid nanofluidnonlinear stretching sheetboundary value problem
spellingShingle Bhuvaneswari SUBRAMANIAN
Elatharasan GOVINDARAJ
Mukesh Kumar PERIYASAMY CHOKKAYEE AMMAL
An Analytic Study on the Enhancement of Heat Transfer with Nanofluid
Medžiagotyra
heat transfer
hybrid nanofluid
nonlinear stretching sheet
boundary value problem
title An Analytic Study on the Enhancement of Heat Transfer with Nanofluid
title_full An Analytic Study on the Enhancement of Heat Transfer with Nanofluid
title_fullStr An Analytic Study on the Enhancement of Heat Transfer with Nanofluid
title_full_unstemmed An Analytic Study on the Enhancement of Heat Transfer with Nanofluid
title_short An Analytic Study on the Enhancement of Heat Transfer with Nanofluid
title_sort analytic study on the enhancement of heat transfer with nanofluid
topic heat transfer
hybrid nanofluid
nonlinear stretching sheet
boundary value problem
url https://matsc.ktu.lt/index.php/MatSc/article/view/34179
work_keys_str_mv AT bhuvaneswarisubramanian ananalyticstudyontheenhancementofheattransferwithnanofluid
AT elatharasangovindaraj ananalyticstudyontheenhancementofheattransferwithnanofluid
AT mukeshkumarperiyasamychokkayeeammal ananalyticstudyontheenhancementofheattransferwithnanofluid
AT bhuvaneswarisubramanian analyticstudyontheenhancementofheattransferwithnanofluid
AT elatharasangovindaraj analyticstudyontheenhancementofheattransferwithnanofluid
AT mukeshkumarperiyasamychokkayeeammal analyticstudyontheenhancementofheattransferwithnanofluid