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  4. Numerical simulation of Airfoil-Vortex Interaction in Tandem Airfoils
 
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Numerical simulation of Airfoil-Vortex Interaction in Tandem Airfoils

Author(s)
A., Sarkar, Abishek
P.P., Nair, Prasanth P.
V., Narayanan, Vinod
DOI
10.2514/6.2024-2334
Abstract
Aerodynamic noise generation from aircraft and wind turbines is one of the pertinent problems in the aeronautical industry. The fluid flow over an airfoil generates noise because of various phenomena such as vortex-shedding and flow separation. The vortex shedding from the upstream object interacts with the object placed in the wake and generates noise, called body-vortex interactions (BVI). Tandem airfoil arrangements were used to analyze the BVI effect on noise generation. The hybrid RANS-LES method was used for simulation. The noise generated in the two airfoils case showed a slight increase. The acoustic level depended on the interference pattern between the acoustic waves radiated from the trailing edge of both airfoils and the interaction of the shed vortices with the second airfoil. It was found that the flow pattern and the resultant acoustic field depend on the distance between the airfoils. An increase in the inlet velocity shifted the peak SPL amplitudes to higher frequencies. The modal analysis provided insight into the broadband spectrum. The trailing edge of the airfoil was observed to generate pressure waves of a broadband nature containing multiple frequencies. Different dominating modes were found in the two airfoil cases, which resulted in a modified acoustic field. � 2024 Elsevier B.V., All rights reserved.
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URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85196261436&doi=10.2514%2F6.2024-2334&partnerID=40&md5=182e34d6c1e10ef3909f64b1523253ae
https://d8.irins.org/handle/IITG2025/29351
Keywords
Acoustic fields
Acoustic noise
Aeroacoustics
Aerodynamics
Airfoils
Aviation
Flow patterns
Flow separation
Modal analysis
Vortex flow
Vortex shedding
Aerodynamic noise
Airfoil-vortex interaction
Body vortices
IDDES
Noise generation
POD
Tandem airfoil
Trailing edges
Vortex interactions
Vortex-shedding
Dynamic mode decomposition
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