Numerical Solution of a Plane Jet Impingement on an Infinite Flat Surface

In this paper numerical solution of the unsteady plane incompressible viscous jet impinging on to an infinite flat surface are presented for Re=450. In the present study, all calculations have been done by using Dufort Frankel scheme and over relaxation scheme. Result and graphs have been...

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Main Authors: Arora S., Irfan Nagma
Format: Article
Language:English
Published: De Gruyter 2015-03-01
Series:Nonlinear Engineering
Subjects:
Online Access:https://doi.org/10.1515/nleng-2014-0026
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spelling doaj-2273da315dbd48ec8e9b8db3af594c322021-09-06T19:21:06ZengDe GruyterNonlinear Engineering2192-80102192-80292015-03-0141313710.1515/nleng-2014-0026Numerical Solution of a Plane Jet Impingement on an Infinite Flat SurfaceArora S.0Irfan Nagma1Department of Mathematics, Lovely Professional University, Punjab-144402 School of Engineering and Technology, Sharda University, Knowledge Park III, Greater Noida, Delhi(NCR)201306, India In this paper numerical solution of the unsteady plane incompressible viscous jet impinging on to an infinite flat surface are presented for Re=450. In the present study, all calculations have been done by using Dufort Frankel scheme and over relaxation scheme. Result and graphs have been obtained by using MATLAB programming. The obtained results explain the flow of water after exhaling from nozzle and the streamlines and vorticity of flow ofwater after striking with flat infinite surface. The solutions obtained by proposed method indicate that this approach is easy to implement and computationally very attractive and the results of our investigation are in qualitative agreement with those available in the literature [1, 9]. This method is capable of greatly reducing the size of calculations while still maintaining high accuracy of the numerical solution.https://doi.org/10.1515/nleng-2014-0026jet impingementheat transferstreamlines and vorticity dufort frankel scheme
collection DOAJ
language English
format Article
sources DOAJ
author Arora S.
Irfan Nagma
spellingShingle Arora S.
Irfan Nagma
Numerical Solution of a Plane Jet Impingement on an Infinite Flat Surface
Nonlinear Engineering
jet impingement
heat transfer
streamlines and vorticity
dufort frankel scheme
author_facet Arora S.
Irfan Nagma
author_sort Arora S.
title Numerical Solution of a Plane Jet Impingement on an Infinite Flat Surface
title_short Numerical Solution of a Plane Jet Impingement on an Infinite Flat Surface
title_full Numerical Solution of a Plane Jet Impingement on an Infinite Flat Surface
title_fullStr Numerical Solution of a Plane Jet Impingement on an Infinite Flat Surface
title_full_unstemmed Numerical Solution of a Plane Jet Impingement on an Infinite Flat Surface
title_sort numerical solution of a plane jet impingement on an infinite flat surface
publisher De Gruyter
series Nonlinear Engineering
issn 2192-8010
2192-8029
publishDate 2015-03-01
description In this paper numerical solution of the unsteady plane incompressible viscous jet impinging on to an infinite flat surface are presented for Re=450. In the present study, all calculations have been done by using Dufort Frankel scheme and over relaxation scheme. Result and graphs have been obtained by using MATLAB programming. The obtained results explain the flow of water after exhaling from nozzle and the streamlines and vorticity of flow ofwater after striking with flat infinite surface. The solutions obtained by proposed method indicate that this approach is easy to implement and computationally very attractive and the results of our investigation are in qualitative agreement with those available in the literature [1, 9]. This method is capable of greatly reducing the size of calculations while still maintaining high accuracy of the numerical solution.
topic jet impingement
heat transfer
streamlines and vorticity
dufort frankel scheme
url https://doi.org/10.1515/nleng-2014-0026
work_keys_str_mv AT aroras numericalsolutionofaplanejetimpingementonaninfiniteflatsurface
AT irfannagma numericalsolutionofaplanejetimpingementonaninfiniteflatsurface
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