TECHNICAL PAPERS

Understanding Practical Limits to Heavy Truck Drag Reduction

Date Published: 2009-10-06
Paper Number: 2009-01-2890
DOI: 10.4271/2009-01-2890

Citation:

Landman, D., Wood, R., Seay, W., and Bledsoe, J., "Understanding Practical Limits to Heavy Truck Drag Reduction," SAE Int. J. Commer. Veh. 2(2):183-190, 2010, doi:10.4271/2009-01-2890.

Author(s):


Drew Landman - Old Dominion Univ.
Richard Wood - SOLUS Solutions and Technologies
Whitney Seay - Langley Full Scale Tunnel
John Bledsoe - Langley Full Scale Tunnel

Abstract:

A heavy truck wind tunnel test program is currently underway at the Langley Full Scale Tunnel (LFST). Seven passive drag reducing device configurations have been evaluated on a heavy truck model with the objective of understanding the practical limits to drag reduction achievable on a modern tractor trailer through add-on devices. The configurations tested include side skirts of varying length, a full gap seal, and tapered rear panels. All configurations were evaluated over a nominal 15 degree yaw sweep to establish wind averaged drag coefficients over a broad speed range using SAE J1252. The tests were conducted by first quantifying the benefit of each individual treatment and finally looking at the combined benefit of an ideal fully treated vehicle. Results show a maximum achievable gain in wind averaged drag coefficient (65 mph) of about 31 percent for the modern conventional-cab tractor-trailer.

File Size: 1108K

Product Status: In Stock

Included in: V118-2

See papers presented at SAE 2009 Commercial Vehicle Engineering Congress & Exhibition, October 2009, Rosemont, IL, USA, Session: Aerodynamics and Fuel Economy (Part 1 of 2)

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