Document Type
Article
Publication Date
2020
DOI
10.17265/1934-8975/2020.05.001
Publication Title
Journal of Energy and Power Engineering
Volume
14
Issue
5
Pages
143-150
Abstract
The automotive industry invests huge resources to improve fuel consumption of commercial vehicles by improving their aerodynamic efficiency. Recently, numerous studies investigating the effect of platooning on aerodynamic drag of semi-trucks have been performed by researchers indicating a positive impact. For the present study, a three-dimensional computational study was performed to investigate the effect of varying offset and linear distance during platooning on the total drag of two semi-trucks. The study was conducted on a full-scale model using Reynold’s Averaged Navier-Strokes governing equations for a moving ground simulation using the STAR-CCM+ computational package. Furthermore, for turbulence, the standard k-ω SST turbulence model was used for a constant free stream velocity of 70 mph. A baseline study on a full-scale model of a single semi-truck was conducted to compare the results from platooning. Initial findings showed that the inline platooning situation was optimal for drag reduction. However, drag reduction varied with varying offset distances. Drag reduction decreased as the offset distance increased.
Rights
© 2020 The Authors.
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International (CC BY-NC 4.0) License.
Original Publication Citation
Mokhtar, W., Dinger, K., Kachare, S., Hossain, M., & Britcher, C. (2020). A CFD study investigating drag reduction for different offset and inline distance for two trucks platooning. Journal of Energy and Power Engineering, 14(5), 143-150. https://doi.org/10.17265/1934-8975/2020.05.001
ORCID
0009-0004-2090-512X (Britcher)
Repository Citation
Mokhtar, Wael; Dinger, Kyle; Kachare, Shardul; Hossain, MdRazib; and Britcher, Colin, "A CFD Study Investigating Drag Reduction for Different Offset and Inline Distance for Two Trucks Platooning" (2020). Mechanical & Aerospace Engineering Faculty Publications. 205.
https://digitalcommons.odu.edu/mae_fac_pubs/205
Included in
Aerodynamics and Fluid Mechanics Commons, Automotive Engineering Commons, Mechanical Engineering Commons