Aerodynamic Requirements for Bvi Noise Control

Aerodynamic Requirements for Bvi Noise Control
Title Aerodynamic Requirements for Bvi Noise Control PDF eBook
Author National Aeronautics and Space Adm Nasa
Publisher Independently Published
Pages 42
Release 2018-10-24
Genre Science
ISBN 9781729162125

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As a rotor blade moves through the air, it sheds vortices. These vortices shed along the length of the blade over time form the wake. The strongest vortices of the wake are those trailing from the tip of the blade. When a rotating blade system moves under certain operating conditions, each blade will impinge on the tip vortices shed by itself or other blades. This impingement is called a blade-vortex interaction, or BVI. Although the blade and trailing tip vortices interact with many different orientations, one of the two extremes, either parallel or perpendicular interaction, is usually modelled. In a perpendicular interaction, the portion of the blade that is actually interacting with the travelling vortex at any given time is very small. A parallel interaction, however, has the largest concurrent interaction with the blade, as a result this case is given the most attention. One of the most commonly studied occurrences of blade-vortex interactions is associated with low-speed descending rotorcraft flight. BVI occur when the tip vortices shed by the blades intersect the plane of the rotor. BVI cause local pressure changes over the blades which are responsible, in part, for the acoustic signature of the rotorcraft. The local pressure changes also cause vibrations which lead to fatigue of both the blades and the mechanical components driving the blades. Wells, Valana L. Ames Research Center NAG2-844

Reduction of Blade-Vortex Interaction (BVI) Noise Through X-force Control

Reduction of Blade-Vortex Interaction (BVI) Noise Through X-force Control
Title Reduction of Blade-Vortex Interaction (BVI) Noise Through X-force Control PDF eBook
Author Fredric H. Schmitz
Publisher
Pages 36
Release 1995
Genre
ISBN

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Advanced UAV Aerodynamics, Flight Stability and Control

Advanced UAV Aerodynamics, Flight Stability and Control
Title Advanced UAV Aerodynamics, Flight Stability and Control PDF eBook
Author Pascual Marqués
Publisher John Wiley & Sons
Pages 788
Release 2017-04-19
Genre Technology & Engineering
ISBN 1118928717

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Comprehensively covers emerging aerospace technologies Advanced UAV aerodynamics, flight stability and control: Novel concepts, theory and applications presents emerging aerospace technologies in the rapidly growing field of unmanned aircraft engineering. Leading scientists, researchers and inventors describe the findings and innovations accomplished in current research programs and industry applications throughout the world. Topics included cover a wide range of new aerodynamics concepts and their applications for real world fixed-wing (airplanes), rotary wing (helicopter) and quad-rotor aircraft. The book begins with two introductory chapters that address fundamental principles of aerodynamics and flight stability and form a knowledge base for the student of Aerospace Engineering. The book then covers aerodynamics of fixed wing, rotary wing and hybrid unmanned aircraft, before introducing aspects of aircraft flight stability and control. Key features: Sound technical level and inclusion of high-quality experimental and numerical data. Direct application of the aerodynamic technologies and flight stability and control principles described in the book in the development of real-world novel unmanned aircraft concepts. Written by world-class academics, engineers, researchers and inventors from prestigious institutions and industry. The book provides up-to-date information in the field of Aerospace Engineering for university students and lecturers, aerodynamics researchers, aerospace engineers, aircraft designers and manufacturers.

Handbook of Noise and Vibration Control

Handbook of Noise and Vibration Control
Title Handbook of Noise and Vibration Control PDF eBook
Author Malcolm J. Crocker
Publisher John Wiley & Sons
Pages 1594
Release 2007-10-05
Genre Technology & Engineering
ISBN 0471395994

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Two of the most acclaimed reference works in the area of acoustics in recent years have been our Encyclopedia of Acoustics, 4 Volume set and the Handbook of Acoustics spin-off. These works, edited by Malcolm Crocker, positioned Wiley as a major player in the acoustics reference market. With our recently published revision of Beranek & Ver's Noise and Vibration Control Engineering, Wiley is a highly respected name in the acoustics business. Crocker's new handbook covers an area of great importance to engineers and designers. Noise and vibration control is one largest areas of application of the acoustics topics covered in the successful encyclopedia and handbook. It is also an area that has been under-published in recent years. Crocker has positioned this reference to cover the gamut of topics while focusing more on the applications to industrial needs. In this way the book will become the best single source of need-to-know information for the professional markets.

Helicopter Aerodynamics Volume I

Helicopter Aerodynamics Volume I
Title Helicopter Aerodynamics Volume I PDF eBook
Author Ray Prouty
Publisher Lulu.com
Pages 594
Release 2009
Genre Science
ISBN 0557089913

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This is a collection of Ray Prouty's columns from Rotor and Wing magazine from 1979 to 1992.

Blade-Mounted Flap Control for Bvi Noise Reduction Proof-Of-Concept Test

Blade-Mounted Flap Control for Bvi Noise Reduction Proof-Of-Concept Test
Title Blade-Mounted Flap Control for Bvi Noise Reduction Proof-Of-Concept Test PDF eBook
Author National Aeronautics and Space Administration (NASA)
Publisher Createspace Independent Publishing Platform
Pages 196
Release 2018-07-17
Genre
ISBN 9781722959548

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This report describes a wind tunnel test of the McDonnell Douglas Helicopter Systems (MDHS) Active Flap Model Rotor at the NASA Langley 14- by 22-Foot Subsonic Tunnel. The test demonstrated that BVI noise reductions and vibration reductions were possible with the use of an active flap. Aerodynamic results supported the acoustic data trends, showing a reduction in the strength of the tip vortex with the deflection of the flap. Acoustic results showed that the flap deployment, depending on the peak deflection angle and azimuthal shift in its deployment schedule, can produce BVI noise reductions as much as 6 dB on the advancing and retreating sides. The noise reduction was accompanied by an increase in low frequency harmonic noise and high frequency broadband noise. A brief assessment of the effect of the flap on vibration showed that significant reductions were possible. The greatest vibration reductions (as much as 76%) were found in the four per rev pitching moment at the hub. Performance improvement cam results were inconclusive, as the improvements were predicted to be smaller than the resolution of the rotor balance. Dawson, Seth and Hassan, Ahmed and Straub, Friedrich and Tadghighi, Hormoz Langley Research Center BLADE-VORTEX INTERACTION; WIND TUNNEL TESTS; NOISE REDUCTION; AIRCRAFT CONTROL; FLAPS (CONTROL SURFACES); HELICOPTERS; AEROACOUSTICS; PRESSURE DISTRIBUTION; ACTIVE CONTROL; INTERACTIONAL AERODYNAMICS; VIBRATION EFFECTS; PITCHING MOMENTS; ROTOR DYNAMICS; SURFACE PROPERTIES; ROTOR BLADES; PRESSURE MEASUREMENT; NOISE SPECTRA; ACOUSTIC PROPERTIES; BLADE SLAP NOISE; DEFLECTION; FREQUENCIES; SUBSONIC SPEED; WING TIP VORTICES...

Blade-Mounted Flap Control for BVI Noise Reduction Proof-of-Concept Test

Blade-Mounted Flap Control for BVI Noise Reduction Proof-of-Concept Test
Title Blade-Mounted Flap Control for BVI Noise Reduction Proof-of-Concept Test PDF eBook
Author
Publisher
Pages 198
Release 1995
Genre
ISBN

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