Rotor Flow Behavior of Unmanned Helicopter
(Sprache: Englisch)
The aerodynamics of the helicopter rotor is one of the most convoluted and confounding matter faced by the aerodynamicists & design engineers since the beginning. The airflow through the rotor blade system is still not exceedingly well understood owing to...
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The aerodynamics of the helicopter rotor is one of the most convoluted and confounding matter faced by the aerodynamicists & design engineers since the beginning. The airflow through the rotor blade system is still not exceedingly well understood owing to its intricacy in aerodynamics. In the field of imaging technology, recent advances have enabled researchers to facilitate and conduct flow visualization that previously was considered as impracticable. Supercomputing methods, predominantly numerical methods are developing in haste; however, the exact decree is yet to be achieved. Wake vortices are the corollary of producing lift. It is prognosticated that helicopter wakes can be significantly greater than those formed by a fixed wing aircraft of the same weight. Nuisance incidents such as brownout & noises are the consequence of rotor wake. Investigation through flow visualization plays a key role in understanding the airflow characteristics and vortex interaction of helicopter rotor blades. Inspecting and scrutinizing the effects of wake vortices during operation is a great challenge and imperative in designing effective rotor system.
Autoren-Porträt von Ziad Bin Abdul Awal, Mohd Shariff Bin Ammoo
Abdul Awal, Ziad BinZiad Bin Abdul Awal in an Aeronautical and Mechanical Engineer primarily specializing in Rotorcraft Technology, Engineering Materials and Aerodynamics. He received his Bachelor and Master Degree from Universiti Teknologi Malaysia (UTM). His research area includes Complex Gyrating Flow Aerodynamics, Micro UAV Design and Vehicular Structure Analysis.
Bibliographische Angaben
- Autoren: Ziad Bin Abdul Awal , Mohd Shariff Bin Ammoo
- 2019, 156 Seiten, Maße: 22 cm, Kartoniert (TB), Englisch
- Verlag: LAP Lambert Academic Publishing
- ISBN-10: 6200077800
- ISBN-13: 9786200077806
Sprache:
Englisch
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