Review on progress and application of active flow control devices - Coandă effect on unmanned aerial vehicles
Coandă effect can be found in virtually all aerodynamic applications, and has drawn renewed interest for various applications, among others for generating lift and maneuvering impulses to be applied for unmanned air vehicles (UAV) and micro air vehicles (MAV). These air vehicles have the potential t...
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Universiti Putra Malaysia Press
2017
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Online Access: | http://psasir.upm.edu.my/id/eprint/58288/1/Review%20on%20progress%20and%20application%20of%20active%20flow%20control%20devices%20-%20Coand%C4%83%20effect%20on%20unmanned%20aerial%20vehicles.pdf http://psasir.upm.edu.my/id/eprint/58288/ http://pjsrr.upm.edu.my/wp-content/uploads/2017/10/PJSRR-VOL-31-113-137.pdf |
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my.upm.eprints.582882018-01-05T04:31:43Z http://psasir.upm.edu.my/id/eprint/58288/ Review on progress and application of active flow control devices - Coandă effect on unmanned aerial vehicles Ahmed, Riyadh Ibraheem Djojodihardjo, Harijono Abu Talib, Abd. Rahim Mohd Rafie, Azmin Shakrine Coandă effect can be found in virtually all aerodynamic applications, and has drawn renewed interest for various applications, among others for generating lift and maneuvering impulses to be applied for unmanned air vehicles (UAV) and micro air vehicles (MAV). These air vehicles have the potential to revolutionize our sensing and information gathering capabilities, in homeland security and environmental areas. Sophisticated unmanned air vehicles for general applications have been developed rapidly across many different industries and interested researchers. In order to carry out a task, these air vehicles have to face many different challenges, due to the MAVs small size, flight regime, and modes of operation. This has led to the development of novel platforms that move away from traditional aircraft design in order to make them more capable. A good example is the Coandă MAV which uses the Active flow control–Coandă Effect. Improved aerodynamic performance of these air vehicles can lead to fast take off and slower landing speeds that can be related to reduce noise and crash survivability issues. The investigation and research in this field is rapidly rising and there are many concepts currently being considered around the world. This report provides an overview on the state of unmanned air vehicle and introduces the techniques of Active Flow Control ACF that could be potentially used for control of UAV. Furthermore, this paper may also focuses on the review research involved with the design modification and the generated flow phenomena of Micro air vehicle MAV. Universiti Putra Malaysia Press 2017 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/58288/1/Review%20on%20progress%20and%20application%20of%20active%20flow%20control%20devices%20-%20Coand%C4%83%20effect%20on%20unmanned%20aerial%20vehicles.pdf Ahmed, Riyadh Ibraheem and Djojodihardjo, Harijono and Abu Talib, Abd. Rahim and Mohd Rafie, Azmin Shakrine (2017) Review on progress and application of active flow control devices - Coandă effect on unmanned aerial vehicles. Pertanika Journal of Scholarly Research Reviews, 3 (1). pp. 113-137. ISSN 2462-2028 http://pjsrr.upm.edu.my/wp-content/uploads/2017/10/PJSRR-VOL-31-113-137.pdf |
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Coandă effect can be found in virtually all aerodynamic applications, and has drawn renewed interest for various applications, among others for generating lift and maneuvering impulses to be applied for unmanned air vehicles (UAV) and micro air vehicles (MAV). These air vehicles have the potential to revolutionize our sensing and information gathering capabilities, in homeland security and environmental areas. Sophisticated unmanned air vehicles for general applications have been developed rapidly across many different industries and interested researchers. In order to carry out a task, these air vehicles have to face many different challenges, due to the MAVs small size, flight regime, and modes of operation. This has led to the development of novel platforms that move away from traditional aircraft design in order to make them more capable. A good example is the Coandă MAV which uses the Active flow control–Coandă Effect. Improved aerodynamic performance of these air vehicles can lead to fast take off and slower landing speeds that can be related to reduce noise and crash survivability issues. The investigation and research in this field is rapidly rising and there are many concepts currently being considered around the world. This report provides an overview on the state of unmanned air vehicle and introduces the techniques of Active Flow Control ACF that could be potentially used for control of UAV. Furthermore, this paper may also focuses on the review research involved with the design modification and the generated flow phenomena of Micro air vehicle MAV. |
format |
Article |
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Ahmed, Riyadh Ibraheem Djojodihardjo, Harijono Abu Talib, Abd. Rahim Mohd Rafie, Azmin Shakrine |
spellingShingle |
Ahmed, Riyadh Ibraheem Djojodihardjo, Harijono Abu Talib, Abd. Rahim Mohd Rafie, Azmin Shakrine Review on progress and application of active flow control devices - Coandă effect on unmanned aerial vehicles |
author_facet |
Ahmed, Riyadh Ibraheem Djojodihardjo, Harijono Abu Talib, Abd. Rahim Mohd Rafie, Azmin Shakrine |
author_sort |
Ahmed, Riyadh Ibraheem |
title |
Review on progress and application of active flow control devices - Coandă effect on unmanned aerial vehicles |
title_short |
Review on progress and application of active flow control devices - Coandă effect on unmanned aerial vehicles |
title_full |
Review on progress and application of active flow control devices - Coandă effect on unmanned aerial vehicles |
title_fullStr |
Review on progress and application of active flow control devices - Coandă effect on unmanned aerial vehicles |
title_full_unstemmed |
Review on progress and application of active flow control devices - Coandă effect on unmanned aerial vehicles |
title_sort |
review on progress and application of active flow control devices - coandă effect on unmanned aerial vehicles |
publisher |
Universiti Putra Malaysia Press |
publishDate |
2017 |
url |
http://psasir.upm.edu.my/id/eprint/58288/1/Review%20on%20progress%20and%20application%20of%20active%20flow%20control%20devices%20-%20Coand%C4%83%20effect%20on%20unmanned%20aerial%20vehicles.pdf http://psasir.upm.edu.my/id/eprint/58288/ http://pjsrr.upm.edu.my/wp-content/uploads/2017/10/PJSRR-VOL-31-113-137.pdf |
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