Homogeneous-heterogeneous reactions in carbon nanotubes over a stretching sheet

The heat transfer and the effects of homogeneous-heterogeneous reactions on the steady boundary layer flow of carbon nanotubes (CNTs) over a stretching sheet is discussed. The governing partial differential equations and boundary conditions are transformed into a set of nonlinear ordinary differenti...

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Main Authors: Lokman, Ahmad Danial, Bachok @ Lati, Norfifah, Rosali, Haliza
Format: Article
Language:English
Published: Universiti Putra Malaysia Press 2019
Online Access:http://psasir.upm.edu.my/id/eprint/70698/1/11.pdf
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author Lokman, Ahmad Danial
Bachok @ Lati, Norfifah
Rosali, Haliza
author_facet Lokman, Ahmad Danial
Bachok @ Lati, Norfifah
Rosali, Haliza
author_sort Lokman, Ahmad Danial
collection UPM
description The heat transfer and the effects of homogeneous-heterogeneous reactions on the steady boundary layer flow of carbon nanotubes (CNTs) over a stretching sheet is discussed. The governing partial differential equations and boundary conditions are transformed into a set of nonlinear ordinary differential equations by using suitable similarity transformations. There are two types of CNTs used which are SWCNTs and MWCNTs with three different types of base fluids which are water, kerosene and engine oil. These equations are then solved numerically by Maple software using shooting method. The effects of the governing parameters on the dimensionless velocity, temperature, concentration, skin friction and Nusselt numbers are analyzed and presented in graphical forms. It is found that as the homogeneous-heterogeneous reactions decreases the concentration distribution getting increase, and volume fraction parameter as well as the suction parameter will effect the fluid flow.
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spelling upm.eprints-706982019-09-06T02:43:48Z http://psasir.upm.edu.my/id/eprint/70698/ Homogeneous-heterogeneous reactions in carbon nanotubes over a stretching sheet Lokman, Ahmad Danial Bachok @ Lati, Norfifah Rosali, Haliza The heat transfer and the effects of homogeneous-heterogeneous reactions on the steady boundary layer flow of carbon nanotubes (CNTs) over a stretching sheet is discussed. The governing partial differential equations and boundary conditions are transformed into a set of nonlinear ordinary differential equations by using suitable similarity transformations. There are two types of CNTs used which are SWCNTs and MWCNTs with three different types of base fluids which are water, kerosene and engine oil. These equations are then solved numerically by Maple software using shooting method. The effects of the governing parameters on the dimensionless velocity, temperature, concentration, skin friction and Nusselt numbers are analyzed and presented in graphical forms. It is found that as the homogeneous-heterogeneous reactions decreases the concentration distribution getting increase, and volume fraction parameter as well as the suction parameter will effect the fluid flow. Universiti Putra Malaysia Press 2019 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/70698/1/11.pdf Lokman, Ahmad Danial and Bachok @ Lati, Norfifah and Rosali, Haliza (2019) Homogeneous-heterogeneous reactions in carbon nanotubes over a stretching sheet. Malaysian Journal of Mathematical Sciences, 13 (spec. Apr.). pp. 129-146. ISSN 1823-8343; ESSN: 2289-750X http://einspem.upm.edu.my/journal/fullpaper/vol13sapril/11.pdf
spellingShingle Lokman, Ahmad Danial
Bachok @ Lati, Norfifah
Rosali, Haliza
Homogeneous-heterogeneous reactions in carbon nanotubes over a stretching sheet
title Homogeneous-heterogeneous reactions in carbon nanotubes over a stretching sheet
title_full Homogeneous-heterogeneous reactions in carbon nanotubes over a stretching sheet
title_fullStr Homogeneous-heterogeneous reactions in carbon nanotubes over a stretching sheet
title_full_unstemmed Homogeneous-heterogeneous reactions in carbon nanotubes over a stretching sheet
title_short Homogeneous-heterogeneous reactions in carbon nanotubes over a stretching sheet
title_sort homogeneous heterogeneous reactions in carbon nanotubes over a stretching sheet
url http://psasir.upm.edu.my/id/eprint/70698/1/11.pdf
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