Computational fluid dynamic on double delta wing

Basic concept of aircraft wing design is based on airfoil section. Time flies, evolution in aircraft wing design shows the desire of mankind to improve the speed, agility, maneuverability of an aircraft. It is proven that aircraft with delta or double delta wing design fulfill this desire. Basic con...

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Main Authors: Abd. Halim, Khairul Adzha, Mat, Shabudin
Format: Article
Published: International Society of Ocean, Mechanical and Aerospace Scientists and Engineers 2015
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Online Access:http://eprints.utm.my/id/eprint/60160/
https://isomase.org/JAse%204-2.php
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spelling my.utm.601602021-08-02T06:56:13Z http://eprints.utm.my/id/eprint/60160/ Computational fluid dynamic on double delta wing Abd. Halim, Khairul Adzha Mat, Shabudin TJ Mechanical engineering and machinery Basic concept of aircraft wing design is based on airfoil section. Time flies, evolution in aircraft wing design shows the desire of mankind to improve the speed, agility, maneuverability of an aircraft. It is proven that aircraft with delta or double delta wing design fulfill this desire. Basic concept of delta wing is triangular planform of the wing that same with the Greek symbol (Δ) and double delta wing is delta wing with a ‘kink’ or leading edge extension. This research aims is to obtain aerodynamic characteristic (Cl, Cd) of double delta wing using computational fluid dynamic and compare the result with wind tunnel experiment. In this work, the geometry of the double delta wing used was constructed using 2 x 106unstructed mesh elements. Turbulence model that been used in this research is k-ω turbulence model. The simulation was run at Reynolds Number of 1 x 106 and 2 x 106 and with variation of pitch angle from 0° to 20°. International Society of Ocean, Mechanical and Aerospace Scientists and Engineers 2015 Article PeerReviewed Abd. Halim, Khairul Adzha and Mat, Shabudin (2015) Computational fluid dynamic on double delta wing. Journal Of Aeronautical Science And Engineering, 2 . pp. 9-14. ISSN 2442-6407 https://isomase.org/JAse%204-2.php
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Abd. Halim, Khairul Adzha
Mat, Shabudin
Computational fluid dynamic on double delta wing
description Basic concept of aircraft wing design is based on airfoil section. Time flies, evolution in aircraft wing design shows the desire of mankind to improve the speed, agility, maneuverability of an aircraft. It is proven that aircraft with delta or double delta wing design fulfill this desire. Basic concept of delta wing is triangular planform of the wing that same with the Greek symbol (Δ) and double delta wing is delta wing with a ‘kink’ or leading edge extension. This research aims is to obtain aerodynamic characteristic (Cl, Cd) of double delta wing using computational fluid dynamic and compare the result with wind tunnel experiment. In this work, the geometry of the double delta wing used was constructed using 2 x 106unstructed mesh elements. Turbulence model that been used in this research is k-ω turbulence model. The simulation was run at Reynolds Number of 1 x 106 and 2 x 106 and with variation of pitch angle from 0° to 20°.
format Article
author Abd. Halim, Khairul Adzha
Mat, Shabudin
author_facet Abd. Halim, Khairul Adzha
Mat, Shabudin
author_sort Abd. Halim, Khairul Adzha
title Computational fluid dynamic on double delta wing
title_short Computational fluid dynamic on double delta wing
title_full Computational fluid dynamic on double delta wing
title_fullStr Computational fluid dynamic on double delta wing
title_full_unstemmed Computational fluid dynamic on double delta wing
title_sort computational fluid dynamic on double delta wing
publisher International Society of Ocean, Mechanical and Aerospace Scientists and Engineers
publishDate 2015
url http://eprints.utm.my/id/eprint/60160/
https://isomase.org/JAse%204-2.php
_version_ 1707765859990110208
score 13.160551