Active control of flow through the nozzles at sonic Mach number
The effectiveness of micro jets to control the base pressure in suddenly expanded axi-symmetric ducts are studied experimentally. As an active control in the form of four micro jets of 1 mm orifice diameter located at 900 intervals along a pitch circle diameter of 1.3 times the nozzle exit diameter...
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iium-498372016-07-18T02:06:20Z http://irep.iium.edu.my/49837/ Active control of flow through the nozzles at sonic Mach number Ashfaq, Syed Khan, Sher Afghan Rathakrishnan, Ethirajan TL Motor vehicles. Aeronautics. Astronautics The effectiveness of micro jets to control the base pressure in suddenly expanded axi-symmetric ducts are studied experimentally. As an active control in the form of four micro jets of 1 mm orifice diameter located at 900 intervals along a pitch circle diameter of 1.3 times the nozzle exit diameter in the base region was employed. The Mach number of the present study is unity. The area ratio (ratio of area of suddenly expanded duct to nozzle exit area) studied are 2.56, 3.24, 4.84 and 6.25. The L/D ratio of the sudden expansion duct varies from 10 to 1. From the experimental results, it is found that the micro jets can serve as active controllers for base pressure. Further, the control effectiveness of the micro jets is getting enhanced under the influence of favourable pressure gradient. To study the effect of micro jets on the quality of flow in the enlarged duct wall pressure was measured and it is found that the micro jets do not disturb the flow field. RS Publication 2013-03 Article PeerReviewed application/pdf en http://irep.iium.edu.my/49837/1/SONIC_IJETED_15412253_ASHFAQ.pdf Ashfaq, Syed and Khan, Sher Afghan and Rathakrishnan, Ethirajan (2013) Active control of flow through the nozzles at sonic Mach number. International Journal of Emerging trends in Engineering and Development (IJETED), 2 (3). pp. 73-80. ISSN 2249-6149 http://www.rspublication.com/ijeted/march13/9.pdf |
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TL Motor vehicles. Aeronautics. Astronautics |
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TL Motor vehicles. Aeronautics. Astronautics Ashfaq, Syed Khan, Sher Afghan Rathakrishnan, Ethirajan Active control of flow through the nozzles at sonic Mach number |
description |
The effectiveness of micro jets to control the base pressure in suddenly expanded axi-symmetric ducts are studied experimentally. As an active control in the form of four micro jets of 1 mm orifice diameter located at 900 intervals along a pitch circle diameter of 1.3 times the nozzle exit diameter in the base region was employed. The Mach number of the present study is unity. The area ratio (ratio of area of suddenly expanded duct to nozzle exit area) studied are 2.56, 3.24, 4.84 and 6.25. The L/D ratio of the sudden expansion duct varies from 10 to 1. From the experimental results, it is found that the micro jets can serve as active controllers for base pressure. Further, the control effectiveness of the micro jets is getting enhanced under the influence of favourable pressure gradient. To study the effect of micro jets on the quality of flow in the enlarged duct wall pressure was measured and it is found that the micro jets do not disturb the flow field. |
format |
Article |
author |
Ashfaq, Syed Khan, Sher Afghan Rathakrishnan, Ethirajan |
author_facet |
Ashfaq, Syed Khan, Sher Afghan Rathakrishnan, Ethirajan |
author_sort |
Ashfaq, Syed |
title |
Active control of flow through the nozzles at sonic Mach number |
title_short |
Active control of flow through the nozzles at sonic Mach number |
title_full |
Active control of flow through the nozzles at sonic Mach number |
title_fullStr |
Active control of flow through the nozzles at sonic Mach number |
title_full_unstemmed |
Active control of flow through the nozzles at sonic Mach number |
title_sort |
active control of flow through the nozzles at sonic mach number |
publisher |
RS Publication |
publishDate |
2013 |
url |
http://irep.iium.edu.my/49837/ http://irep.iium.edu.my/49837/ http://irep.iium.edu.my/49837/1/SONIC_IJETED_15412253_ASHFAQ.pdf |
first_indexed |
2023-09-18T21:10:24Z |
last_indexed |
2023-09-18T21:10:24Z |
_version_ |
1777411214522974208 |