Influence of Wheel Wake on Vehicle Aerodynamics: An Eddy-Resolving Simulation Study

Author:

Krüger Louis,Joksimovic Ivan,Wegt Sebastian,Burgbacher Johannes,Kuthada Timo,Wittmeier Felix,Hussong Jeanette,Wagner Andreas,Jakirlic Suad

Abstract

<div class="section abstract"><div class="htmlview paragraph">A computational study of the vehicle aerodynamics influenced by the wake of the rotating wheel taking into account a detailed rim geometry is presently performed. The car configuration corresponds to a full-scale (1:1) notchback configuration of the well-known ‘DrivAer’ vehicle model, Heft et al. [<span class="xref">1</span>]. The objective of the present work is to investigate the performance of some popular turbulence models in conjunction with different methods for handling the wheel rotation – rotating wall velocity, ‘multiple reference frame’ and ‘sliding grid algorithm’. The specific focus hereby is on a near-wall RANS eddy-viscosity model based on elliptic-relaxation, sensitized to resolve fluctuating turbulence by introducing a specifically modeled production term in the scale-supplying equation, motivated by the Scale-Adaptive Simulation approach (SAS, [<span class="xref">2</span>]), proposed by Krumbein et al. [<span class="xref">3</span>]. All relevant model equations have been implemented in the OpenFOAM® Code, with which all simulations are performed. The results interpretation includes the instantaneous and time-averaged flow properties in terms of the velocity and pressure fields characterizing the underlying flow topology, the integral aerodynamic force coefficients, and finally the POD (Proper Orthogonal Decomposition) analysis, which allows to detect most energetic spatially-independent coherent structures.</div></div>

Publisher

SAE International

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Harmonizing Aerodynamic Efficiency, Stability, and Acoustic Excellence: Multi-Objective Optimization for Electric Vehicle Rear-End Design;2024-06-14

2. Eddy-Resolving Simulation of Conjugate Heat Transfer in a Test Specimen pertinent to Cooling Channels in IC Engines;SAE Technical Paper Series;2024-04-09

3. Analysis of Aerodynamic Characteristics of Fan-Type Wheels;SAE Technical Paper Series;2024-04-09

4. Analysis of transient flow wake of the car wheel using the Spectral-Proper-Orthogonal-Decomposition method;Proceeding of 10th International Symposium on Turbulence, Heat and Mass Transfer, THMT-23, Rome, Italy, 11-15 September 2023;2023

5. Analysis of transient flow wake of the car wheel using the Spectral-Proper-Orthogonal-Decomposition method;Proceeding of 10th International Symposium on Turbulence, Heat and Mass Transfer, THMT-23, Rome, Italy, 11-15 September 2023;2023

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