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

Coupled Level-Set Volume of Fluid Simulations of Water Flowing Over a Simplified Drainage Channel With and Without Air Coflow

Journal Article
2017-01-1552
ISSN: 1946-3995, e-ISSN: 1946-4002
Published March 28, 2017 by SAE International in United States
Coupled Level-Set Volume of Fluid Simulations of Water Flowing Over a Simplified Drainage Channel With and Without Air Coflow
Sector:
Citation: Dianat, M., Skarysz, M., Hodgson, G., Garmory, A. et al., "Coupled Level-Set Volume of Fluid Simulations of Water Flowing Over a Simplified Drainage Channel With and Without Air Coflow," SAE Int. J. Passeng. Cars - Mech. Syst. 10(1):369-377, 2017, https://doi.org/10.4271/2017-01-1552.
Language: English

References

  1. McAlister , G. , Ettema , R. and Marshall , J.S. 2005 Wind-Driven Rivulet Breakoff and Droplet Flows in Microgravity and Terrestrial-Gravity Conditions ASME J. Fluids Engineering 127 257 266
  2. Zhang , K. and Hu , H. 2014 An experimental study of the wind-driven water droplet/rivulet flows over an airfoil pertinent to wind turbine icing phenomena Proc. Of the ASME 2014 4th Joint US-European Fluids Engineering Division Summer Meeting FEDSM 2014
  3. Marshall , J. S. and Ettema , R. 2005 Contact-line instabilities of driven liquid films. Advances in Fluid Mechanics WIT Press Southampton, England
  4. Gaylard , A., Fagg , M., Bannister , M., Duncan , B. Modelling A-Pillar Water Overflow: Developing CFD and Experimental Methods SAE Int. J. Passeng. Cars - Mech. Syst. 5 2 789 800 2012 10.4271/2012-01-0588
  5. Jilesen , J., Gaylard , A., Spruss , I., Kuthada , T. Advances in Modelling A-Pillar Water Overflow SAE Technical Paper 2015-01-1549 2015 10.4271/2015-01-1549
  6. Meredith , K. , de Vries , J. , Wang , Y. and Xin , Y. 2013 A comprehensive model for simulating the interaction of water with solid surfaces in fire suppression environments Proceedings of the Combustion Institute 34 2719 2726
  7. Scardovelli , R. and Zaleski , S. 1999 Direct numerical simulation of free-surface and interfacial flow Annu. Rev. Fluid Mech. 31 567 603
  8. Korner , C , Thies , M, Hofman , T, Thurey , N and Rude , U. 2005 Lattice Boltzmann Model for Free Surface Flow for Modeling Foaming J. Stat Phys. 121 179 196
  9. Sussman , M. , Smereka , P. and Osher , S. 1994 A level set approach for computing solutions to incompressible two-phase flow J. Comp. Phys. 114 146 159
  10. Sussman , M. and Puckett , E. G. 2000 A coupled level set and volume-of-fluid method for computing 3d and axisymmetric incompressible two-phase flows J. Comp. Phys. 162 301 337
  11. Dianat , M. , Skarysz , M. and Garmory , A. 2016 A Coupled Level Set and Volume of Fluid Method for Automotive Exterior Water Management Applications Int. J. Multiphase Flow.
  12. OpenFOAM, v.2.1.1 2013 http://www.openfoam.com
  13. Xiao , F. 2012 Large Eddy Simulation of Liquid Jet Primary Breakup PhD thesis Loughborough Univ. U.K
  14. Xiao , F. , Dianat , M. and McGuirk , J. J. 2013 Large Eddy Simulation of Liquid-Jet Primary Breakup in Air Crossflow AIAA J. 51 12 2878 2893
  15. Xiao , F. , Dianat , M. and McGuirk , J. J. 2014 LES of turbulent liquid jet primary breakup in turbulent coaxial air flow Int. J. Multiphase Flow 60 103 118
  16. Xiao , F. , Dianat , M. and McGuirk , J. J. 2014 Large Eddy Simulation of Single Drop and Liquid Jet Primary Breakup Atomization and Sprays 24 281 302
  17. Xiao , F. , Dianat , M. and McGuirk , J. J. 2016 A Robust Interface Method for Drop Formation and Breakup Simulation at High Density Ratio using an Extrapolated Liquid Velocity Computers and Fluids 136 402 420
  18. Brackbill , J. U. , Kothe , D. B. and Zemach , C. 1992 Continuum Method for Modelling Surface Tension J. Comp. Phys. 100 335 354
  19. Cox , R. 1998 Inertial and Viscous Effects on Dynamic Contact Angles J. Fluid Mech. 57 249 278
  20. Voinov , O. 1976 Hydrodynamics of wetting Fluid Dynamics 11 714 721
  21. Hoffman R. L. 1975 A study of the advancing interface. I. Interface shape in liquid-gas systems J. Colloid Interface Sci. 50 228
  22. Oliver , J. F. , Huh , C. and Mason , S. G. 1976 Resistance to Spreading of Liquids by Sharp Edges Journal of Colloid and Interface Science 59 3
  23. Shikhmurzaiev Y. D. 2008 Capillary Flows with Forming Interfaces Chapman & Hall/CRC
  24. Yokoi , K. , Vadillo , D., Hinch , J. and Hutchings , I. 2009 Numerical studies of the influence of dynamic contact angle on a droplet impacting on a dry surface Physics of Fluids 21 072102

Cited By