LAPSE:2023.24766
Published Article
LAPSE:2023.24766
Testing the Accuracy of the Cell-Set Model Applied on Vane-Type Sub-Boundary Layer Vortex Generators
March 28, 2023
Abstract
Vortex Generators (VGs) are applied before the expected region of separation of the boundary layer in order to delay or remove the flow separation. Although their height is usually similar to that of the boundary layer, in some applications, lower VGs are used, Sub-Boundary Layer Vortex Generators (SBVGs), since this reduces the drag coefficient. Numerical simulations of sub-boundary layer vane-type vortex generators on a flat plate in a negligible pressure gradient flow were conducted using the fully resolved mesh model and the cell-set model, with the aim on assessing the accuracy of the cell-set model with Reynolds-Averaged Navier-Stokes (RANS) and Large Eddy Simulation (LES) turbulence modelling techniques. The implementation of the cell-set model has supposed savings of the 40% in terms of computational time. The vortexes generated on the wake behind the VG; vortical structure of the primary vortex; and its path, size, strength, and produced wall shear stress have been studied. The results show good agreements between meshing models in the higher VGs, but slight discrepancies on the lower ones. These disparities are more pronounced with LES. Further study of the cell-set model is proposed, since its implementation entails great computational time and resources savings.
Keywords
cell-set model, computational fluid dynamics (CFD), LES, RANS, vortex generator (VG)
Suggested Citation
Portal-Porras K, Fernandez-Gamiz U, Aramendia I, Teso-Fz-Betoño D, Zulueta E. Testing the Accuracy of the Cell-Set Model Applied on Vane-Type Sub-Boundary Layer Vortex Generators. (2023). LAPSE:2023.24766
Author Affiliations
Portal-Porras K: Nuclear Engineering and Fluid Mechanics Department, University of the Basque Country, Nieves Cano 12, Vitoria-Gasteiz, 01006 Araba, Spain [ORCID]
Fernandez-Gamiz U: Nuclear Engineering and Fluid Mechanics Department, University of the Basque Country, Nieves Cano 12, Vitoria-Gasteiz, 01006 Araba, Spain [ORCID]
Aramendia I: Nuclear Engineering and Fluid Mechanics Department, University of the Basque Country, Nieves Cano 12, Vitoria-Gasteiz, 01006 Araba, Spain [ORCID]
Teso-Fz-Betoño D: Automatic Control and System Engineering Department, University of the Basque Country, Nieves Cano 12, Vitoria-Gasteiz, 01006 Araba, Spain [ORCID]
Zulueta E: Automatic Control and System Engineering Department, University of the Basque Country, Nieves Cano 12, Vitoria-Gasteiz, 01006 Araba, Spain
Journal Name
Processes
Volume
9
Issue
3
First Page
503
Year
2021
Publication Date
2021-03-11
ISSN
2227-9717
Version Comments
Original Submission
Other Meta
PII: pr9030503, Publication Type: Journal Article
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LAPSE:2023.24766
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https://doi.org/10.3390/pr9030503
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CC BY 4.0
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