Empirical and Numerical Analysis of Aerodynamic Drag on a Typical SUV Car Model at Different Locations of Vortex Generator
The aerodynamic characteristics are concerned with the fuel consumption rate and the stability of a high speed vehicle. The current research aims at studying the aerodynamic behavior of a typical SUV vehicle model mounted with the vortex generator (VG) at various linear positions with reference to i...
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Isfahan University of Technology
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doaj-008d70d919b7415f9fae9531231f33172020-11-25T03:26:43ZengIsfahan University of Technology Journal of Applied Fluid Mechanics1735-35722019-01-0112514871496.Empirical and Numerical Analysis of Aerodynamic Drag on a Typical SUV Car Model at Different Locations of Vortex GeneratorP. N. Selvaraju0K. M. Parammasivam1Automobile Engineering, Rajalakshmi Engineering College, Chennai, Tamilnadu, 602105, IndiaAerospace Engineering, MIT Campus Anna University, Chennai, Tamilnadu, 600044, IndiaThe aerodynamic characteristics are concerned with the fuel consumption rate and the stability of a high speed vehicle. The current research aims at studying the aerodynamic behavior of a typical SUV vehicle model mounted with the vortex generator (VG) at various linear positions with reference to its rear roof edge. The flow field around the vehicle model was observed at different wind speed conditions. It had been determined that at the instance of lower wind speed, the VG had minimal effects of aerodynamic drag on the vehicle body. However, at the instance of higher wind speed conditions the magnitude of the drag force decreased significantly. Vehicles move at higher speeds in the highways, location of the VG varied towards the upstream of the vehicle due to early flow separation. Therefore test were conducted at different wind speeds and locations of VG. The numerical simulation conduced in this study provides flow characteristics around the vehicle model for different wind speeds. The realizable k−ε model was used to simulate and validate the empirical results in an effective manner. By using experimental data, the drag was reduced by 9.04 % at the optimized VG location. The results revealed that the induced aerodynamic drag would determine the best car shape. This paper provides a better understanding of VG positioning for enhanced flow separation control.http://jafmonline.net/JournalArchive/download?file_ID=49509&issue_ID=1002Flow separation control; Vortex generator; VG location; Drag reduction; Boundary layer thickness. |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
P. N. Selvaraju K. M. Parammasivam |
spellingShingle |
P. N. Selvaraju K. M. Parammasivam Empirical and Numerical Analysis of Aerodynamic Drag on a Typical SUV Car Model at Different Locations of Vortex Generator Journal of Applied Fluid Mechanics Flow separation control; Vortex generator; VG location; Drag reduction; Boundary layer thickness. |
author_facet |
P. N. Selvaraju K. M. Parammasivam |
author_sort |
P. N. Selvaraju |
title |
Empirical and Numerical Analysis of Aerodynamic Drag on a Typical SUV Car Model at Different Locations of Vortex Generator |
title_short |
Empirical and Numerical Analysis of Aerodynamic Drag on a Typical SUV Car Model at Different Locations of Vortex Generator |
title_full |
Empirical and Numerical Analysis of Aerodynamic Drag on a Typical SUV Car Model at Different Locations of Vortex Generator |
title_fullStr |
Empirical and Numerical Analysis of Aerodynamic Drag on a Typical SUV Car Model at Different Locations of Vortex Generator |
title_full_unstemmed |
Empirical and Numerical Analysis of Aerodynamic Drag on a Typical SUV Car Model at Different Locations of Vortex Generator |
title_sort |
empirical and numerical analysis of aerodynamic drag on a typical suv car model at different locations of vortex generator |
publisher |
Isfahan University of Technology |
series |
Journal of Applied Fluid Mechanics |
issn |
1735-3572 |
publishDate |
2019-01-01 |
description |
The aerodynamic characteristics are concerned with the fuel consumption rate and the stability of a high speed vehicle. The current research aims at studying the aerodynamic behavior of a typical SUV vehicle model mounted with the vortex generator (VG) at various linear positions with reference to its rear roof edge. The flow field around the vehicle model was observed at different wind speed conditions. It had been determined that at the instance of lower wind speed, the VG had minimal effects of aerodynamic drag on the vehicle body. However, at the instance of higher wind speed conditions the magnitude of the drag force decreased significantly. Vehicles move at higher speeds in the highways, location of the VG varied towards the upstream of the vehicle due to early flow separation. Therefore test were conducted at different wind speeds and locations of VG. The numerical simulation conduced in this study provides flow characteristics around the vehicle model for different wind speeds. The realizable k−ε model was used to simulate and validate the empirical results in an effective manner. By using experimental data, the drag was reduced by 9.04 % at the optimized VG location. The results revealed that the induced aerodynamic drag would determine the best car shape. This paper provides a better understanding of VG positioning for enhanced flow separation control. |
topic |
Flow separation control; Vortex generator; VG location; Drag reduction; Boundary layer thickness. |
url |
http://jafmonline.net/JournalArchive/download?file_ID=49509&issue_ID=1002 |
work_keys_str_mv |
AT pnselvaraju empiricalandnumericalanalysisofaerodynamicdragonatypicalsuvcarmodelatdifferentlocationsofvortexgenerator AT kmparammasivam empiricalandnumericalanalysisofaerodynamicdragonatypicalsuvcarmodelatdifferentlocationsofvortexgenerator |
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