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Empirical Model for Vane-Type Vortex Generators in a Navier-Stokes Code
Author(s) -
Julianne C. Dudek
Publication year - 2006
Publication title -
aiaa journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.828
H-Index - 158
eISSN - 1081-0102
pISSN - 0001-1452
DOI - 10.2514/1.20141
Subject(s) - vortex , vortex generator , navier–stokes equations , type (biology) , mechanics , physics , code (set theory) , reynolds averaged navier–stokes equations , computational fluid dynamics , mathematics , classical mechanics , computer science , compressibility , geology , paleontology , set (abstract data type) , programming language
An empirical model which simulates the effects of vane-type vortex generators in ducts was incorporated into the Wind-US Navier-Stokes computational fluid dynamics code. The model enables the effects of the vortex generators to be simulated without defining the details of the geometry within the grid, and makes it practical for researchers to evaluate multiple combinations of vortex generator arrangements. The model determines the strength of each vortex based on the generator geometry and the local flow conditions. Validation results are presented for flow in a straight pipe with a counter-rotating vortex generator arrangement, and the results are compared with experimental data and computational simulations using a gridded vane generator. Results are also presented for vortex generator arrays in two S-duct diffusers, along with accompanying experimental data. The effects of grid resolution and turbulence model are also examined.

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