A ground vehicle traveling along a road is subject to unsteady crosswinds in a number of situations. In windy conditions, for example, the natural atmospheric wind can exhibit strong lateral gusts. Other situations, such as tunnel exits or overtaking induce sudden changes in crosswinds, as well. The interaction of this unsteady oncoming flow with the vehicle and the resulting aerodynamic forces and moments affect the vehicle stability and comfort. The objectives of the current study are to improve the understanding of flow physics of such transient flow and ultimately to develop measurement techniques to quantify the vehicle’s sensitivity to unsteady crosswind. A square back simplified car model is exposed to a forced oscillating yaw and results are compared to static measurements. Tests are conducted at Reynolds number Re = 3.7 × 105 and reduced frequencies ranging from 0.265 × 10−2 to 5.3 × 10−2. Unsteady side force and yawing moment measurements are associated with particle image velocimetry flow fields to interpret dynamic loads in link with flow topology evolution. Phase average force and moment measurements are found to exhibit a phase shift between static and dynamic tests that increases with oscillating frequency. Velocity fields reveal that the phase-shift seems to originate from the rear part of the car model. Moreover, lateral vortical structures appearing on the lee side from β = 15 deg increase this phase-shift and consequently appear to be favorable to the lateral stability of the vehicle.

References

1.
Hucho
,
W. H.
,
1998
,
Aerodynamics of Road Vehicles
, 4th ed.,
SAE International
, Chap. 5.
2.
Baker
,
C. J.
,
1986
, “
A Simplified Analysis of Various Types of Wind Induced Road Vehicle Accidents
,”
J. Wind Eng. Ind. Aerodyn.
,
22
, pp.
69
85
.10.1016/0167-6105(86)90012-7
3.
Cooper
,
R.
,
1984
, “
Atmospheric Turbulence With Respect to Moving Ground Vehicles
,”
J. Wind Eng. Ind. Aerodyn.
,
17
, pp.
215
238
.10.1016/0167-6105(84)90057-6
4.
Baker
,
C. J.
,
1991
, “
Ground Vehicles in High Cross Winds part II: Unsteady Aerodynamic Forces
,”
J. Fluids Struct.
,
5
, pp.
91
111a
.10.1016/0889-9746(91)80013-4
5.
Bearman
,
P.
, and
Mullarkey
,
S.
,
1994
, “
Aerodynamic Forces on Road Vehicles Due to Steady Side Winds and Gusts
,”
RAeS Conference on Vehicle Aerodynamics
, Loughborough, UK.
6.
Bocciolone
,
M.
,
Cheli
,
F.
,
Corradi
,
R.
,
Muggiasca
,
S.
, and
Tomasini
,
G.
,
2008
, “
Crosswind Action on Rail Vehicles: Wind Tunnel Experimental Analyses
,”
J. Wind Eng. Ind. Aerodyn.
,
96
, pp.
584
610
.10.1016/j.jweia.2008.02.030
7.
Passmore
,
M. A.
,
Richardson
,
S.
, and
Imam
,
A.
,
2001
, “
An Experimental Study of Unsteady Vehicle Aerodynamics
,”
Proc. Inst. Mech. Eng.
,
215
(part D), pp.
779
788
.10.1243/0954407011528365
8.
Baker
,
C. J.
, and
Humphreys
,
N. D.
,
1996
, “
Assessment of the Adequacy of Various Wind Tunnel Techniques to Obtain Aerodynamic Data for Ground Vehicles in Cross Winds
,”
J. Wind Eng. Ind. Aerodyn.
,
60
, pp.
49
68
.10.1016/0167-6105(96)00023-2
9.
Sims-Williams
,
D.
,
2011
, “
Cross Winds and Transients: Reality, Simulation and Effects
”, SAE Technical Paper No. 2011-01-0172.
10.
Volpe
,
R.
,
Da Silva
,
A.
,
Ferrand
,
V.
,
Le Moyne
,
L.
,
2013
, “
Experimental and Numerical Validation of a Wind Gust Facility
,”
ASME J. Fluid Eng.
,
135
, p.
011106
.10.1115/1.4023194
11.
Beauvais
,
F.
,
1967
, “
Transient Nature of Wind Gust Effects on an Automobile
, SAE Technical Paper No. 670608.
12.
Cairns
,
R. S.
,
1994
, “
Lateral Aerodynamic Characteristics of Motor Vehicles in Transient Crosswinds
,” Ph.D. thesis, Cranfield Institute of Technology, Cranfield, Bedford, UK.
13.
Chadwick
,
A.
,
1999
, “
Crosswind Aerodynamics of Sports Utility Vehicles
,” Ph.D. thesis, Cranfield University, Cranfield, Bedford, UK.
14.
Tsubokura
,
M.
,
Nakashima
,
T.
,
Kitayama
,
M.
,
Ikawa
,
Y.
,
Doh
,
D. H.
, and
Kobayashi
,
T.
,
2010
, “
Large Eddy Simulation on the Unsteady Aerodynamic Response of a Road Vehicle in Transient Crosswinds
,”
Int. J. Heat Fluid Flow
,
31
, pp.
1075
1086
.10.1016/j.ijheatfluidflow.2010.05.008
15.
Krajnovic
,
S.
,
Ringqvist
,
P.
,
Nakade
,
K.
, and
Basara
,
B.
,
2012
, “
Large Eddy Simulation of the Flow Around a Simplified Train Moving Through a Crosswind Flow
,”
J. Wind Eng. Ind. Aerodyn.
,
110
, pp.
86
99
.10.1016/j.jweia.2012.07.001
16.
Dominy
,
R.
, and
Ryan
,
A.
,
1999
, “
An Improved Wind Tunnel Configuration for the Investigation of Aerodynamic Crosswind Gust Response
,” SAE Technical Paper No. 1999-01-0808.
17.
Favre
,
T.
, and
Efraimsson
,
G.
,
2011
, “
An Assessment of Detached-Eddy Simulations of Unsteady Crosswind Aerodynamics of Road Vehicles
,”
Flow, Turbulence and Combustion
,
87
, pp.
133
163
.10.1007/s10494-011-9333-4
18.
Garry
,
K. P.
, and
Cooper
,
K. R.
,
1998
, “
Comparison of Quasi-Static and Dynamic Wind Tunnel Measurements on Simplified Tractor-Trailer Models
,”
J. Wind Eng. Ind. Aerodyn.
,
22
, pp.
185
194
.10.1016/0167-6105(86)90083-8
19.
Mansor
,
S.
, and
Passmore
,
M. A.
,
2007
, “
Estimation of Bluff Body Transient Aerodynamics Using an Oscillating Model Rig
,”
J. Wind Eng. Ind. Aerodyn.
,
96
, pp.
1218
1231
.10.1016/j.jweia.2007.06.043
20.
Chometon
,
F.
,
Strzelecki
,
A.
,
Ferrand
,
V.
,
Dechipre
,
H.
,
Dufour
,
P. C.
,
Gohlke
,
M.
, and
Herbert
, V
.
,
2005
, “
Experimental Study of Unsteady Wakes Behind an Oscillating Car model
,” SAE Technical Paper No. 2005-01-0604.
21.
Wojciak
,
J.
,
Theissen
,
P.
,
Heuler
,
K.
,
Indinger
,
T.
,
Adams
,
N.
, and
Demuth
,
R.
,
2011
, “
Experimental Investigation of Unsteady Vehicle Aerodynamics under Time-Dependent Flow Conditions-Part 2
,” SAE Technical Paper No. 2011-01-0164.
22.
Guilmineau
,
E.
, and
Chometon
,
F.
,
2007
, “
Experimental and Numerical Analysis of the Effect of Side Wind on a Simplified Car Model
,” SAE Technical Paper No. 2007-01-0108.
23.
Guilmineau
,
E.
, and
Chometon
,
F.
,
2009
, “
Effect of Side Wind on a Simplified Car Model: Experimental and Numerical Analysis
,”
ASME J. Fluid Eng.
,
131
, p.
021104
.10.1115/1.3063648
24.
Krajnovic
,
S.
,
Basara
,
B.
, and
Bengtsson
,
A.
,
2011
, “
Large Eddy Simulation Investigation of the Hysteresis Effects in the Flow Around an Oscillating Ground Vehicle
,”
ASME J. Fluid Eng.
,
133
, p.
121103
.10.1115/1.4005260
25.
Diana
,
G.
,
Resta
,
F.
, and
Rocchi
,
D.
,
2008
, “
A New Numerical Approach to Reproduce Bridge Aerodynamic Nonlinearities in Time Domain
,”
J. Wind Eng. Ind. Aerodyn.
,
96
, pp.
1871
1884
.10.1016/j.jweia.2008.02.052
26.
Diana
,
G.
,
Rocchi
,
D.
,
Argentini
,
T.
, and
Muggiasca
,
S.
,
2010
, “
Aerodynamic Instability of a Bridge Deck Section Model: Linear and Nonlinear Approach to Force Modeling
,”
J. Wind Eng. Ind. Aerodyn.
,
98
, pp.
363
374
.10.1016/j.jweia.2010.01.003
27.
Gohlke
,
M.
,
Beaudoin
,
J. F.
,
Amielh
,
M.
, and
Anselmet
,
F.
,
2007
, “
Experimental Analysis of Flow Structures and Forces on a 3D-Bluff-Body in Constant Cross-Wind
,”
Exp. Fluids
,
43
, pp.
579
594
.10.1007/s00348-007-0341-z
28.
Goetz
,
H.
,
1995
, “
Crosswind Facilities and Procedures
,” SAE Paper No. 1109.
29.
Kum
,
R.
,
1998
, “
Investigation of the Comparison Method for the Dynamic Calibration of Force Transducers
,”
Measurements
,
3
, pp.
239
245
.10.1016/S0263-2241(98)00027-X
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