Aerodynamic Interaction Between Vortical Wakes And Lifting Two Dimensional Bodies

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Aerodynamic Interaction Between Vortical Wakes and Lifting Two-Dimensional Bodies

Aerodynamic Interaction Between Vortical Wakes and Lifting Two-Dimensional Bodies
Author :
Publisher :
Total Pages : 36
Release :
ISBN-10 : 1729082769
ISBN-13 : 9781729082768
Rating : 4/5 (768 Downloads)

Book Synopsis Aerodynamic Interaction Between Vortical Wakes and Lifting Two-Dimensional Bodies by : National Aeronautics and Space Adm Nasa

Download or read book Aerodynamic Interaction Between Vortical Wakes and Lifting Two-Dimensional Bodies written by National Aeronautics and Space Adm Nasa and published by . This book was released on 2018-10-22 with total page 36 pages. Available in PDF, EPUB and Kindle. Book excerpt: Unsteady rotor wake interactions with the empennage, tail boom, and other aerodynamic surfaces of a helicopter have a significant influence on its aerodynamic performance, the ride quality, and vibration. A numerical method for computing the aerodynamic interaction between an interacting vortex wake and the viscous flow about arbitrary two-dimensional bodies was developed to address this helicopter problem. The method solves for the flow field velocities on a body-fitted computational mesh using finite-difference techniques. The interacting vortex wake is represented by an array of discrete vortices which, in turn, are represented by a finite-core model. The evolution of the interacting vortex wake is calculated by Lagrangian techniques. The viscous flow field of the two-dimensional body is calculated on an Eulerian grid. The flow around circular and elliptic cylinders in the absence of an interacting vortex wake was calculated. These results compare very well with other numerical results and with results obtained from experiment and thereby demonstrate the accuracy of the viscous solution. The interaction of a rotor wake with the flow about a 4 to 1 elliptic cylinder at 45 degree incidence was calculated for a Reynolds number of 3000. The results demonstrate the significant variations in the lift and drag on the elliptic cylinder in the presence of the interacting rotor wake. Stremel, Paul M. Ames Research Center RTOP 505-61-51...


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