Flow Structure Generated by Perpendicular Blade-Vortex Interaction and Implications for Helicopter Noise Prediction. Volume 1

Flow Structure Generated by Perpendicular Blade-Vortex Interaction and Implications for Helicopter Noise Prediction. Volume 1
Author :
Publisher : Createspace Independent Publishing Platform
Total Pages : 346
Release :
ISBN-10 : 1724218298
ISBN-13 : 9781724218292
Rating : 4/5 (292 Downloads)

Book Synopsis Flow Structure Generated by Perpendicular Blade-Vortex Interaction and Implications for Helicopter Noise Prediction. Volume 1 by : National Aeronautics and Space Administration (NASA)

Download or read book Flow Structure Generated by Perpendicular Blade-Vortex Interaction and Implications for Helicopter Noise Prediction. Volume 1 written by National Aeronautics and Space Administration (NASA) and published by Createspace Independent Publishing Platform. This book was released on 2018-07-24 with total page 346 pages. Available in PDF, EPUB and Kindle. Book excerpt: The perpendicular interaction of a streamwise vortex with an infinite span helicopter blade was modeled experimentally in incompressible flow. Three-component velocity and turbulence measurements were made using a sub-miniature four sensor hot-wire probe. Vortex core parameters (radius, peak tangential velocity, circulation, and centerline axial velocity deficit) were determined as functions of blade-vortex separation, streamwise position, blade angle of attack, vortex strength, and vortex size. The downstream development of the flow shows that the interaction of the vortex with the blade wake is the primary cause of the changes in the core parameters. The blade sheds negative vorticity into its wake as a result of the induced angle of attack generated by the passing vortex. Instability in the vortex core due to its interaction with this negative vorticity region appears to be the catalyst for the magnification of the size and intensity of the turbulent flowfield downstream of the interaction. In general, the core radius increases while peak tangential velocity decreases with the effect being greater for smaller separations. These effects are largely independent of blade angle of attack; and if these parameters are normalized on their undisturbed values, then the effects of the vortex strength appear much weaker. Two theoretical models were developed to aid in extending the results to other flow conditions. An empirical model was developed for core parameter prediction which has some rudimentary physical basis, implying usefulness beyond a simple curve fit. An inviscid flow model was also created to estimate the vorticity shed by the interaction blade, and to predict the early stages of its incorporation into the interacting vortex. Wittmer, Kenneth S. and Devenport, William J. Langley Research Center NASA-CR-200159, NAS 1.26:200159 NAG1-1539...


Flow Structure Generated by Perpendicular Blade-Vortex Interaction and Implications for Helicopter Noise Prediction. Volume 1 Related Books

Flow Structure Generated by Perpendicular Blade-Vortex Interaction and Implications for Helicopter Noise Prediction. Volume 1
Language: en
Pages: 346
Authors: National Aeronautics and Space Administration (NASA)
Categories:
Type: BOOK - Published: 2018-07-24 - Publisher: Createspace Independent Publishing Platform

GET EBOOK

The perpendicular interaction of a streamwise vortex with an infinite span helicopter blade was modeled experimentally in incompressible flow. Three-component v
Scientific and Technical Aerospace Reports
Language: en
Pages: 702
Authors:
Categories: Aeronautics
Type: BOOK - Published: 1995 - Publisher:

GET EBOOK

New Computational Methods for the Prediction and Analysis of Helicopter Noise
Language: en
Pages: 18
Authors: Roger C. Strawn
Categories: Fluid dynamics
Type: BOOK - Published: 1996 - Publisher:

GET EBOOK

Abstract: "This paper describes several new methods to predict and analyze rotorcraft noise. These methods are: 1) a combined computational fluid dynamics and K
Monthly Catalogue, United States Public Documents
Language: en
Pages: 1284
Authors:
Categories: Government publications
Type: BOOK - Published: 1994 - Publisher:

GET EBOOK

Monthly Catalog of United States Government Publications
Language: en
Pages:
Authors:
Categories: Government publications
Type: BOOK - Published: 1994 - Publisher:

GET EBOOK