Effect of internal heat generation or absorption on MHD free convection from an isothermal truncated cone

This paper examines the effect of heat generation or absorption on the free convection flow of an incompressible, electrically conducting fluid about an isothermal truncated cone in the presence of a transverse magnetic field. The non-linear coupled partial differential equations governing the flow...

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Main Authors: A.H. Srinivasa, A.T. Eswara
Format: Article
Language:English
Published: Elsevier 2016-06-01
Series:Alexandria Engineering Journal
Subjects:
MHD
Online Access:http://www.sciencedirect.com/science/article/pii/S1110016816300588
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spelling doaj-2b9fabd1304a457ba77a388e3214f3a22021-06-02T08:46:39ZengElsevierAlexandria Engineering Journal1110-01682016-06-015521367137310.1016/j.aej.2016.04.003Effect of internal heat generation or absorption on MHD free convection from an isothermal truncated coneA.H. Srinivasa0A.T. Eswara1Department of Mathematics, Maharaja Institute of Technology, Mysore 571 438, IndiaDepartment of Mathematics, GSSS Institute of Engineering and Technology for Women, Mysore 570 016, IndiaThis paper examines the effect of heat generation or absorption on the free convection flow of an incompressible, electrically conducting fluid about an isothermal truncated cone in the presence of a transverse magnetic field. The non-linear coupled partial differential equations governing the flow and heat transfer have been solved numerically, using an efficient implicit finite-difference scheme along with quasilinearization technique. The nonsimilar solutions have been obtained for the problem overcoming numerical difficulties near the leading edge and in the downstream regime, for air (Pr = 0.72). The effects of various physical parameters on skin friction and heat transfer coefficients and, on velocity and temperature are shown graphically for different values of magnetic parameter (M) and heat generation/absorption parameter (Q). It is observed that, magnetic field decreases both skin friction and heat transfer coefficients. The effect of heat generation or absorption is found to be very significant on heat transfer, but its effect on skin friction is negligible.http://www.sciencedirect.com/science/article/pii/S1110016816300588Free convectionMHDSkin frictionHeat transferTruncated coneHeat generation/absorption
collection DOAJ
language English
format Article
sources DOAJ
author A.H. Srinivasa
A.T. Eswara
spellingShingle A.H. Srinivasa
A.T. Eswara
Effect of internal heat generation or absorption on MHD free convection from an isothermal truncated cone
Alexandria Engineering Journal
Free convection
MHD
Skin friction
Heat transfer
Truncated cone
Heat generation/absorption
author_facet A.H. Srinivasa
A.T. Eswara
author_sort A.H. Srinivasa
title Effect of internal heat generation or absorption on MHD free convection from an isothermal truncated cone
title_short Effect of internal heat generation or absorption on MHD free convection from an isothermal truncated cone
title_full Effect of internal heat generation or absorption on MHD free convection from an isothermal truncated cone
title_fullStr Effect of internal heat generation or absorption on MHD free convection from an isothermal truncated cone
title_full_unstemmed Effect of internal heat generation or absorption on MHD free convection from an isothermal truncated cone
title_sort effect of internal heat generation or absorption on mhd free convection from an isothermal truncated cone
publisher Elsevier
series Alexandria Engineering Journal
issn 1110-0168
publishDate 2016-06-01
description This paper examines the effect of heat generation or absorption on the free convection flow of an incompressible, electrically conducting fluid about an isothermal truncated cone in the presence of a transverse magnetic field. The non-linear coupled partial differential equations governing the flow and heat transfer have been solved numerically, using an efficient implicit finite-difference scheme along with quasilinearization technique. The nonsimilar solutions have been obtained for the problem overcoming numerical difficulties near the leading edge and in the downstream regime, for air (Pr = 0.72). The effects of various physical parameters on skin friction and heat transfer coefficients and, on velocity and temperature are shown graphically for different values of magnetic parameter (M) and heat generation/absorption parameter (Q). It is observed that, magnetic field decreases both skin friction and heat transfer coefficients. The effect of heat generation or absorption is found to be very significant on heat transfer, but its effect on skin friction is negligible.
topic Free convection
MHD
Skin friction
Heat transfer
Truncated cone
Heat generation/absorption
url http://www.sciencedirect.com/science/article/pii/S1110016816300588
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