This content is not included in your SAE MOBILUS subscription, or you are not logged in.

Characterisation of the Tyre Spray Ejected Downstream of a Bluff Automotive Body

Journal Article
2022-01-0893
ISSN: 2641-9637, e-ISSN: 2641-9645
Published March 29, 2022 by SAE International in United States
Characterisation of the Tyre Spray Ejected Downstream of a Bluff Automotive Body
Sector:
Citation: Crickmore, C., Garmory, A., and Butcher, D., "Characterisation of the Tyre Spray Ejected Downstream of a Bluff Automotive Body," SAE Int. J. Adv. & Curr. Prac. in Mobility 5(1):404-418, 2023, https://doi.org/10.4271/2022-01-0893.
Language: English

References

  1. Kabanovs , A. , Hodgson , G. , Garmory , A. , Passmore , M. et al. A Parametric Study of Automotive Rear End Geometries on Rear Soiling SAE Int. J. Passeng. Cars - Mech. Syst. 10 2 Mar. 2017 553 562 10.4271/2017-01-1511
  2. Oliveira , D. and Goncalves dos Santos , R. Study of the Effective Backlight Angle Influence on Vehicle Aerodynamics and Contamination SAE Technical Papers 2020-01-0691 Apr. 2020 https://doi.org/10.4271/2020-01-0691
  3. Vitale , J.J. , Pingitore , G.P.D. , Schmith , S. , Giffi , C.A. , Robinson , R. , and Gangula , B. https://hdl.handle.net/2134/22605 2017 https://www2.deloitte.com/content/dam/Deloitte/de/Documents/manufacturing/us-manufacturing-consumer-opinions-on-advanced-vehicle-technology.pdf
  4. Gourova , R. , Krasnov , O. , and Yarovoy , A. Analysis of Rain Clutter Detections in Commercial 77 GHz Automotive Radar European Microwave Week 2017: “A Prime Year for a Prime Event”, EuMW 2017 - Conference Proceedings; 14th European Microwave Conference, EURAD 2017 2017 25 28
  5. Berk , M. et al. A Stochastic Physical Simulation Framework to Quantify the Effect of Rainfall on Automotive Lidar SAE Technical Paper 2019-01-0134 Apr. 2019 https://doi.org/10.4271/2019-01-0134
  6. Rasshofer , R.H. , Spies , M. , and Spies , H. Influences of Weather Phenomena on Automotive Laser Radar Systems Adv. Radio Sci. 9 2011 49 60 10.5194/ars-9-49-2011
  7. Kabanovs , A. , Varney , M. , Garmory , A. , Passmore , M. et al. Experimental and Computational Study of Vehicle Surface Contamination on a Generic Bluff Body 2016 10.4271/2016-01-1604
  8. Jilesen , J. , Gaylard , A.P. , Duncan , B. , Konstantinov , A. et al. Simulation of Rear and Body Side Vehicle Soiling by Road Sprays Using Transient Particle Tracking SAE Int. J. Passeng. Cars - Mech. Syst. 6 1 2013 424 435 10.4271/2013-01-1256
  9. Paschkewitz , J.S. A Comparison of Dispersion Calculations in Bluff Body Wakes Using LES and Unsteady RANS Energy Environ. Dir. Lawrence Livermore Natl. Lab. 2006
  10. Schilling , F. , Kuthada , T. , Gaylard , A. , Wiedemann , J. et al. Advances in Experimental Vehicle Soiling Tests SAE Technical Paper 2020-01-0681 Apr. 2020 https://doi.org/10.4271/2020-01-0681
  11. Ahmed , S.R. , Ramm , G. , and Faltin , G. Some Salient Features of the Time-Averaged Ground Vehicle Wake 1984 10.4271/840300
  12. Howell , J. and Hickman , D. The Influence of Ground Simulation on the Aerodynamics of a Simple Car Model SAE Technical Paper 970134 1997 https://doi.org/10.4271/970134
  13. Howell , J. , Sheppard , A. , and Blakemore , A. Aerodynamic Drag Reduction for a Simple Bluff Body Using Base Bleed SAE Technical Paper 2003-01-0995 2003 https://doi.org/10.4271/2003-01-0995
  14. Howell , J. , Passmore , M. , and Tuplin , S. Aerodynamic Drag Reduction on a Simple Car-Like Shape with Rear Upper Body Taper SAE Int. J. Passeng. Cars - Mech. Syst. 6 1 2013 52 60 10.4271/2013-01-0462
  15. Perry , A.-K. 2016
  16. Luckhurst , S. 2019
  17. Pavia , G. 2019
  18. Varney , M. 2020
  19. The OpenFOAM Foundation OpenFOAM v7 The OpenFoam Foundation 2019 openfoam.org/release/7
  20. Johl , G. , Passmore , M. , and Render , P. Design Methodology and Performance of an Indraft Wind Tunnel Aeronaut. J. 108 1087 2004 465 473 https://doi.org/10.1017/S0001924000000282
  21. SAE J1594 - Vehicle Aerodynamics Terminology SAE International Surface Vehicle Recommended Practice 2010
  22. Forbes , D.C. , Page , G.J. , Passmore , M.A. , and Gaylard , A.P. Computational Study of Wake Structure and Base Pressure on a Generic SUV Model The International Vehicle Aerodynamics Conference 2018 67 77
  23. Kabanovs , A. 2018
  24. Spalart , P.R. , Deck , S. , Shur , M.L. , Squires , K.D. , Strelets , M.K. , and Travin , A. A New Version of Detached-Eddy Simulation, Resistant to Ambiguous Grid Densities Theor. Comput. Fluid Dyn. 20 3 181 195 2006 10.1007/s00162-006-0015-0
  25. Spalding , D.B. A Single Formula for the ‘Law of the Wall J. Appl. Mech. Trans. ASME 28 3 1960 455 458 10.1115/1.3641728
  26. Migdal , D. and Agosta , V.D. A Source Flow Model for Continuum Gas-Particle Flow J. Appl. Mech. Trans. ASME 34 4 1964 860 865 10.1115/1.3607848
  27. Saffman , P.G. The Lift on a Small Sphere in a Slow Shear Flow J. Fluid Mech. 22 2 1965 385 400 10.1017/S0022112065000824
  28. Gosman , A.D. and Ioannides , E. Aspects of Computer Simulation of Liquid-Fueled Combustors 1981 10.2514/6.1981-323
  29. Paschkewitz , J.S. Simulation of Spray Dispersion in a Simplified Heavy Vehicle Wake Energy Environ. Dir. Lawrence Livermore Natl. Lab 2006 1 20
  30. Kabanovs , A. , Garmory , A. , Passmore , M. , and Gaylard , A. Modelling the Effect of Spray Breakup, Coalescence and Evaporation on Vehicle Surface Contamination Dynamics SAE Int. J. Passeng. Cars - Mech. Syst 11 5 2018 463 475 10.4271/2018-01-0705
  31. van Basshuysen , R. and Schäfer , F. Handbuch Verbrennungsmotoren, 7. Auflage 2015
  32. Lumley , J.L. The Structure of Inhomogenous Turbulent Flows Atmospheric Turbulence and Radio Wave Propagation 1967 166 177
  33. Sirovich , L. Turbulence and the Dynamics of Coherent Structures Part I: Coherent Structures Q. Appl. Math. 45 3 1987 561 571
  34. Varney , M. , Pavia , G. , Passmore , M. , and Crickmore , C. 2020
  35. Grandemange , M. Analysis and Control of Three-dimensional Turbulent Wakes: from Axisymmetric Bodies to Road Vehicles École Polytechnique - ENSTA ParisTech 2013
  36. Pope , S.B. Turbulent Flows 2000
  37. Mathworks MATLAB R2021a 2021 https://uk.mathworks.com/

Cited By