Estimation of stability derivatives in newtonian limit for oscillating cone

Stability derivatives in Newtonian limit for an oscillating cone are obtained. Stiffness derivative decreases with pivot position for the entire range of cone angles. For cone angles in the range 20 to 30 degrees there is substantial increase in the stiffness derivative. Damping derivative decrea...

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Main Authors: Shabana, Aysha, Monis, Renita Sharon, Crasta, Asha, Khan, Sher Afghan
Format: Proceeding Paper
Language:English
English
Published: Institute of Physics Publishing 2018
Subjects:
Online Access:http://irep.iium.edu.my/66508/
http://irep.iium.edu.my/66508/1/66508_Estimation%20of%20Stability%20Derivatives%20in%20Newtonian_conference%20article.pdf
http://irep.iium.edu.my/66508/2/66508_Estimation%20of%20Stability%20Derivatives%20in%20Newtonian_scopus.pdf
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author Shabana, Aysha
Monis, Renita Sharon
Crasta, Asha
Khan, Sher Afghan
author_facet Shabana, Aysha
Monis, Renita Sharon
Crasta, Asha
Khan, Sher Afghan
author_sort Shabana, Aysha
building IIUM Repository
collection Online Access
description Stability derivatives in Newtonian limit for an oscillating cone are obtained. Stiffness derivative decreases with pivot position for the entire range of cone angles. For cone angles in the range 20 to 30 degrees there is substantial increase in the stiffness derivative. Damping derivative decreases with pivot position for various cone angles and attains a minima at h = 0.75 and then again with increase in pivot position there is non-linear increment in damping derivatives. There is considerable change in the magnitude, for higher cone angles in the range of 20 degrees and above as the centre of pressure has further moved towards the trailing edge of the cone at pivot position around h = 0.88. Stiffness derivative increases with cone angle for various pivot positions. Damping derivative with cone angle for various fixed pivot positions is seen to increase linearly with cone angle, it is also observed that this trend of linear increment tend to become non-linear for cone angles in the range 20 degrees and beyond. Damping derivative decreases with pivot position h = 0.8 for the entire range of cone angles, however, for pivot position h = 1.0, shows almost constant values up to cone angle of 20 degrees. For cone angle 30 degrees value of damping derivative coincides irrespective of pivot position being at h = 0.8 or 1.0 and this trend is attributed to the 3-D effect of the flow field.
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format Proceeding Paper
id iium-66508
institution International Islamic University Malaysia
institution_category Local University
language English
English
last_indexed 2025-11-14T17:11:29Z
publishDate 2018
publisher Institute of Physics Publishing
recordtype eprints
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spelling iium-665082018-09-25T09:01:07Z http://irep.iium.edu.my/66508/ Estimation of stability derivatives in newtonian limit for oscillating cone Shabana, Aysha Monis, Renita Sharon Crasta, Asha Khan, Sher Afghan QD Chemistry TJ Mechanical engineering and machinery Stability derivatives in Newtonian limit for an oscillating cone are obtained. Stiffness derivative decreases with pivot position for the entire range of cone angles. For cone angles in the range 20 to 30 degrees there is substantial increase in the stiffness derivative. Damping derivative decreases with pivot position for various cone angles and attains a minima at h = 0.75 and then again with increase in pivot position there is non-linear increment in damping derivatives. There is considerable change in the magnitude, for higher cone angles in the range of 20 degrees and above as the centre of pressure has further moved towards the trailing edge of the cone at pivot position around h = 0.88. Stiffness derivative increases with cone angle for various pivot positions. Damping derivative with cone angle for various fixed pivot positions is seen to increase linearly with cone angle, it is also observed that this trend of linear increment tend to become non-linear for cone angles in the range 20 degrees and beyond. Damping derivative decreases with pivot position h = 0.8 for the entire range of cone angles, however, for pivot position h = 1.0, shows almost constant values up to cone angle of 20 degrees. For cone angle 30 degrees value of damping derivative coincides irrespective of pivot position being at h = 0.8 or 1.0 and this trend is attributed to the 3-D effect of the flow field. Institute of Physics Publishing 2018-06-01 Proceeding Paper PeerReviewed application/pdf en http://irep.iium.edu.my/66508/1/66508_Estimation%20of%20Stability%20Derivatives%20in%20Newtonian_conference%20article.pdf application/pdf en http://irep.iium.edu.my/66508/2/66508_Estimation%20of%20Stability%20Derivatives%20in%20Newtonian_scopus.pdf Shabana, Aysha and Monis, Renita Sharon and Crasta, Asha and Khan, Sher Afghan (2018) Estimation of stability derivatives in newtonian limit for oscillating cone. In: 1st International Conference on Aerospace and Mechanical Engineering, AeroMech 2017, 21-22 November 2017, Parkroyal HotelBatu Ferringhi, Penang; Malaysia. http://iopscience.iop.org/article/10.1088/1757-899X/370/1/012061/pdf 10.1088/1757-899X/370/1/012061
spellingShingle QD Chemistry
TJ Mechanical engineering and machinery
Shabana, Aysha
Monis, Renita Sharon
Crasta, Asha
Khan, Sher Afghan
Estimation of stability derivatives in newtonian limit for oscillating cone
title Estimation of stability derivatives in newtonian limit for oscillating cone
title_full Estimation of stability derivatives in newtonian limit for oscillating cone
title_fullStr Estimation of stability derivatives in newtonian limit for oscillating cone
title_full_unstemmed Estimation of stability derivatives in newtonian limit for oscillating cone
title_short Estimation of stability derivatives in newtonian limit for oscillating cone
title_sort estimation of stability derivatives in newtonian limit for oscillating cone
topic QD Chemistry
TJ Mechanical engineering and machinery
url http://irep.iium.edu.my/66508/
http://irep.iium.edu.my/66508/
http://irep.iium.edu.my/66508/
http://irep.iium.edu.my/66508/1/66508_Estimation%20of%20Stability%20Derivatives%20in%20Newtonian_conference%20article.pdf
http://irep.iium.edu.my/66508/2/66508_Estimation%20of%20Stability%20Derivatives%20in%20Newtonian_scopus.pdf