Influence of unsteady aerodynamics on driving dynamics of passenger cars

Recent approaches towards numerical investigations with computational fluid dynamics methods on unsteady aerodynamic loads of passenger cars identified major differences compared with steady-state aerodynamic excitations. Furthermore, innovative vehicle concepts such as electric-vehicles or hybrid d...

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Veröffentlicht in:Vehicle system dynamics 2014-11, Vol.52 (11), p.1470-1488
Hauptverfasser: Huemer, Jakob, Stickel, Thomas, Sagan, Erich, Schwarz, Martin, Wall, Wolfgang A.
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container_end_page 1488
container_issue 11
container_start_page 1470
container_title Vehicle system dynamics
container_volume 52
creator Huemer, Jakob
Stickel, Thomas
Sagan, Erich
Schwarz, Martin
Wall, Wolfgang A.
description Recent approaches towards numerical investigations with computational fluid dynamics methods on unsteady aerodynamic loads of passenger cars identified major differences compared with steady-state aerodynamic excitations. Furthermore, innovative vehicle concepts such as electric-vehicles or hybrid drives further challenge the basic layout of passenger cars. Therefore, the relevance of unsteady aerodynamic loads on cross-wind stability of changing basic vehicle architectures should be analysed. In order to assure and improve handling and ride characteristics at high velocity of the actual range of vehicle layouts, the influence of unsteady excitations on the vehicle response was investigated. For this purpose, a simulation of the vehicle dynamics through multi-body simulation was used. The impact of certain unsteady aerodynamic load characteristics on the vehicle response was quantified and key factors were identified. Through a series of driving simulator tests, the identified differences in the vehicle response were evaluated regarding their significance on the subjective driver perception of cross-wind stability. Relevant criteria for the subjective driver assessment of the vehicle response were identified. As a consequence, a design method for the basic layout of passenger cars and chassis towards unsteady aerodynamic excitations was defined.
doi_str_mv 10.1080/00423114.2014.944191
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source Taylor & Francis:Master (3349 titles)
subjects Automobiles
Automotive engineering
chassis development
Computer simulation
cross-wind
driver perception
Dynamics
Excitation
Mathematical models
Stability
straight line behaviour
Unsteady aerodynamics
vehicle stability
title Influence of unsteady aerodynamics on driving dynamics of passenger cars
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