Analysis of potential flow around two-dimensional body by finite element method

Journal article


Tarafder, S. and Naz, N. 2015. Analysis of potential flow around two-dimensional body by finite element method. Journal of Mechanical Engineering Research. 7 (2), pp. 9-22. https://doi.org/10.5897/JMER2014.0342
AuthorsTarafder, S. and Naz, N.
Abstract

The paper presents a numerical method for analyzing the potential flow around two dimensional body such as single circular cylinder, NACA0012 hydrofoil and double circular cylinders by finite element method. The numerical technique is based upon a general formulation for the Laplace’s equation using Galerkin technique finite element approach. The solution of the systems of algebraic equations is approached by Gaussian elimination scheme. Laplace’s equation is expressed in terms of both steam function and velocity potential formulation. A finite element program is developed in order to analyze the result. The contours of stream and velocity potential function are drawn. The contour of stream function exhibits the characteristics of potential flow and does not intersect each other. The calculated pressure co-efficient shows the pressure decreasing around the forwarded face from the initial total pressure at the stagnation point and reaching a minimum pressure at the top of the cylinder.

KeywordsStream function; Velocity potential; Number of nodes (NDE); Number of elements (NEL)
Year2015
JournalJournal of Mechanical Engineering Research
Journal citation7 (2), pp. 9-22
PublisherAcademic Journals
ISSN2141–2383
Digital Object Identifier (DOI)https://doi.org/10.5897/JMER2014.0342
Official URLhttps://academicjournals.org/journal/JMER/article-full-text-pdf/20E80A053033
Publication dates
Print07 Jul 2015
Publication process dates
Accepted23 Mar 2015
Deposited30 Oct 2023
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Open
Supplemental file
File Access Level
Open
Output statusPublished
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