Browse > Article

Recent Progress of Spray-Wall Interaction Research  

Lee Sang-Yong (Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology, Science Town)
Ryu Sung-Uk (Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology, Science Town)
Publication Information
Journal of Mechanical Science and Technology / v.20, no.8, 2006 , pp. 1101-1117 More about this Journal
Abstract
In the present article, recent progress of spray-wall interaction research has been reviewed. Studies on the spray-wall interaction phenomena can be categorized mainly into three groups: experiments on single drop impact and spray (multiple-drop) impingement, and development of comprehensive models. The criteria of wall-impingement regimes (i.e., stick, rebound, spread, splash, boiling induced breakup, breakup, and rebound with breakup) and the post-impingement characteristics (mostly for splash and rebound) are the main subjects of the single-drop impingement studies. Experimental studies on spray-wall impingement phenomena cover examination of the outline shape and internal structure of a spray after the wall impact. Various prediction models for the spray-wall impingement phenomena have been developed based on the experiments on the single drop impact and the spray impingement. In the present article, details on the wall-impingement criteria and post-impingement characteristics of single drops, external and internal structures of the spray after the wall impact, and their prediction models are reviewed.
Keywords
Single Drop Impact; Impingement Regime Criteria; Post-Impingement Characteristics; Spray Outline; Spray Internal Structure; Heat Transfer Performance; Spray-Wall Interaction Model;
Citations & Related Records

Times Cited By Web Of Science : 3  (Related Records In Web of Science)
Times Cited By SCOPUS : 4
연도 인용수 순위
1 Fukumoto, M., Nishioka, E. and Nishiyama, T., 2002, 'New Criterion for Splashing in Flattening of Thermal Sprayed Particles onto Flat Substrate Surface,' Surface and Coatings Technology, Vol. 161, pp. 103-110   DOI   ScienceOn
2 Ghielmetti, C., 2001, 'Experimental Analysis of a Spray Impinging on a Conical Surface,' International Journal of Thermal Sciences, Vol. 40, pp. 249-254   DOI   ScienceOn
3 Yao, S. C. and Cox, T. L., 2002, 'A General Heat Transfer Correlation for Impacting Water Sprays on High-Temperature Surfaces,' Experimental Heat Transfer, Vol. 15, pp. 207-219   DOI
4 Yarin, S. H. and Weiss, D., 1995, 'Impact of Drops on Solid Surface: Self-Similar Capillary Waves and Splashing as a New Type of Kinematic Discontinuity,' Journal of Fluid Mechanics, Vol. 283, pp. 141-173   DOI   ScienceOn
5 Yoon, S. S. and Desjardin, P. E., 2006, 'Modeling Spray Impingement using Linear Stability Theories for Shattering Droplets,' International Journal for Numerical Methods in Fluids, Vol. 50, pp.469-489   DOI   ScienceOn
6 Yoon, S. S., 2006, Private Communications
7 Yoon, S. S., Desjardin, P. E., Presser, C., Hewson, J. C. and Avedisian, C. T., 2006, 'Numerical Modeling and Experimental Measurements of Water Spray Impact and Transport over a Cylinder,' International Journal of Multiphase Flow, Vol. 32, pp. 132-157   DOI   ScienceOn
8 Sivakumar, D. and Tropea, C., 2002, 'Splashing Impact of a Spray onto a Liquid Film,' Physics of Fluids, Vol. 14, pp. L85-L88   DOI   ScienceOn
9 Fujimoto, H., Send a, J., Nagae, M., Hashimoto, A., Saito, M. and Katsura, N., 1990, 'Characteristics of a Diesel Spray Impinging on a Flat Wall,' In: Proc. COMODIA 90 Int. Symposium Kyoto, Japan, pp. 193-198
10 Cossali, G. E., Marengo, M. and Santini, M., 2005, 'Secondary Atomization Produced by Single Drop Vertical Impacts onto Heated Surfaces,' Experimental Thermal and Fluid Science, Vol. 29, pp. 937-946   DOI   ScienceOn
11 Stanton, D. W. and Rutland, C. J., 1996, 'Modeling Fuel Film Formation and Wall Interaction in Diesel Engines,' SAE960628
12 Stanton, D. W. and Rutland, C. J., 1998, 'MultiDimensional Modeling of Thin Liquid Films and Spray-Wall Interactions Resulting from Impinging Sprays,' Int. J. Heat and Mass Transfer, Vol. 41, pp. 3037-3054   DOI   ScienceOn
13 Stow, C. D. and Hadfield, M. G., 1981, 'An Experimental Investigation of Fluid Flow Resulting from the Impact of a Water Drop with an Unyielding Dry Surface,' Proceeding of the Rayal Society of London. Series A, Vol. 373, pp.419-441   DOI
14 Stow, C. D. and Stainer, R. D., 1977, 'The Physical Products of a Splashing Water Drop,' Journal of the Meteorological Society of Japan., Vol. 55, pp. 518-531   DOI
15 Tropea, C. and Marengo, M., 1999, 'The Impact of Drops on Walls and Films,' Multiphase Science and Technology, Vol. 11, pp. 19-36   DOI
16 Wachters, L. H. and Westerling, N. A. J., 1966, 'The Heat Transfer from a Hot Wall to Impinging Water Drops in the Spheroidal State,' Chemical Engineering Science, Vol. 21, pp. 1047-1056   DOI   ScienceOn
17 Wang, A. B., Chen, C. C. and Hwang, W. C., 2002, 'On Some New Aspects of Splashing Impact of Drop-Liquid Surface Interactions,' DropSurface Interactions, Springer, Heidelberg
18 Wang, D. M. and Watkins, A. P., 1993, 'Numerical Modeling of Spray Wall Impaction Phenomena,' International Journal of Heat and Fluid Flow, Vol. 14, pp.301-312   DOI   ScienceOn
19 Davidson, M. R., 2002, 'Spreading of an Inviscid Drop Impacting on a Liquid Film,' Chemical Engineering Science, Vol. 57, pp. 3639-3647   DOI   ScienceOn
20 Chandra, S. and Avedisian, C. T., 1991, 'On the Collision of a Droplet with a Solid Surface,' Proceedings of the Royal Society of london. Series A, Vol. 432, pp. 13-41   DOI   ScienceOn
21 Pasandideh-Fard, M., Qiao, Y. M., Chandra, S. and Mostaghimi, J., 1996, 'Capillary Effects during Droplet Impact on a Solid Surface,' Physics of Fluids, Vol. 8, pp. 650-659   DOI
22 Roisman, I. V., Prunet-Foch, B., Tropea, C. and Vignes-Adler, M., 2002, 'Multiple Drop Impact onto a Dry Solid Substrate,' Journal of Colloid and Interface Science, Vol. 256, pp.396-410   DOI   ScienceOn
23 Sikalo, S., Marengo, M., Tropea, C. and Ganic, E. N., 2002, 'Analysis of Impact of Droplets on Horizontal Surfaces,' Experimental Thermal and Fluid Science, Vol. 25, pp. 503-510   DOI   ScienceOn
24 Naber, J. D. and Farrell, P. V., 1993, 'Hydrodynamics of Droplet Impingement on a Heated Surface,' SAE930919
25 Cossali, G. E., Coghe, A. and Marengo, M., 1997, 'The Impact of a Single Drop on a Wetted Solid Surface,' Experiments in Fluids, Vol. 22, pp. 463-472   DOI
26 Sikalo, S., Tropea, C. and Ganic, E. N., 2005, 'Impact of Droplets onto Inclined Surfaces,' Journal of Colloid and Interface Science, Vo1. 286, pp. 661-669   DOI   ScienceOn
27 Park, K. and Watkins, A. P., 1996, 'Comparison of Wall Spray Impaction Models with Experimental Data on Drop Velocities and Size,' International Journal of Heat and Fluid Flow, Vol. 17, pp.424-438   DOI   ScienceOn
28 Naber, J. D. and Reitz, R. D., 1988, 'Modeling Engine Spray/Wall Impingement,' SAE 88107
29 Panao, M. R. O. and Moreira, A. L. N, 2004, 'Experimental Study of the Flow Regimes Resulting from the Impact of an Intermittent Gasoline Spray,' Experiments in Fluids, Vol. 37, pp. 834-855   DOI
30 Mundo, C., Tropea, C., and Sommerfeld, M., 1997, 'Numerical and Experimental Investigation of Spray Characteristics in the Vicinity of a Rigid Wall,' Experimental Thermal and Fluid Science, Vol.15, pp. 228-237   DOI   ScienceOn
31 Mundo, C., Sommerfeld, M. and Tropea, C., 1998, 'On the Modeling of Liquid Sprays Impinging on Surfaces,' Atomization and Sprays, Vol.8, pp. 625-652   DOI
32 Bolle, L. and Moureau, J. C., 1982, 'Spray Cooling of Hot Surfaces,' Multiphase Science and Technology, Vol. 1, pp. 1-97   DOI
33 Bai, C. X., Ruche, H. and Gosman, A. D., 2002, 'Modeling of Gasoline Spray Impingement,' Atomization and Sprays, Vol. 12, pp. 1-27   DOI
34 Bernardin, J. D., Stebbins, C. J. and Mudawar, I., 1997, 'Mapping of Impact and Heat Transfer Regimes of Water Drops Impinging on a Polished Surface,' International Journal of Heat and Mass Transfer, Vol. 40, pp. 247-267   DOI   ScienceOn
35 Arcoumanis, C., Whitelaw, D. S., and Whitelaw, J. H, 1997, 'Gasoline Injection against Surfaces and Films,' Atomization and Sprays, Vol. 7, pp.437-456   DOI
36 Bai, C. X. and Gosman, A. D., 1995, 'Development of Methodology for Spray Impingement Simulation,' SAE 950283
37 Matsumoto, S. and Saito, S., 1970, 'On the Mechanism of Suspension of Particles in Horizontal Conveying: Monte Carlo Simulation based in the Irregular Bouncing Model,' Journal of Chemical Engineering of Japan, pp.83-92
38 Mundo, C., Sommerfeld, M. and Tropea, C., 1995, 'Droplet-Wall Collisions: Experimental Studies of the Deposition and Breakup Process,' International Journal of Multiphase Flows, Vol. 21, pp. 151-173   DOI   ScienceOn
39 Mao, T., Kuhn, D. C. S. and Tran, H., 1997, 'Spread and Rebound of Liquid Droplets upon Impact on Flat Surfaces,' AIChE Journal, Vol. 43, pp.2169-2179   DOI   ScienceOn
40 Mathews, W. S., Lee, C. F. and Peters, J. E., 2003, 'Experimental Investigation of Spray/Wall Impingement, Atomization and Sprays,' Vol.13, pp. 223-242   DOI
41 Lee, S. H. and Ryou, H. S., 2001, 'Development of a New Model and Heat Transfer Analysis of Impinging Diesel Sprays on a Wall,' Atomization and Sprays, Vol. 11, pp. 85-105   DOI
42 Arcoumanis, C. and Chang, J. C., 1994, 'Flow and Heat Transfer Characteristics of Impinging Transient Diesel Sprays,' SAE 940678
43 Abu-Zaid, M. and Atreya, A., 1994, 'Transient Cooling of Hot Porous and Nonporous Ceramic Solids by Droplet Evaporation,' ASME Journal of Heat Transfer, Vol. 116, pp.694-701   DOI   ScienceOn
44 Harvie, D. J. E. and Fletcher, D. F., 2001a, 'A Hydrodynamic and Thermodynamic Simulation of Droplet Impacts on Hot Surfaces, Part II: Validation and Applications,' International Journal of Heat and Mass Transfer, Vol.. 44, pp.2643-2659   DOI   ScienceOn
45 Katsura, N., Saito, M., Senda, J. and Fujimoto, H., 1989, 'Characteristics of a Diesel Spray Impinging on a Flat Wall,' SAE890264
46 Ko. Y. S. and Chung. S. H., 1996, 'An Experiment on the Breakup of Impinging Droplets on a Hot Surface,' Experiments in Fluids, Vol. 21, pp. 118-123   DOI
47 Lee, S. H. and Ryou, H. S., 2000, 'Development of New Spray/Wall Interaction Model,' International Journal of Multiphase Flow, Vol. 26, pp. 1209-1234   DOI   ScienceOn
48 Johnen, T. and Haug, M., 1995, 'Spray Formation Observation and Fuel Film Development Measurements in the Intake of Spark Ignition Engine,' SAE950511
49 Kang, B.S. and Lee, D. H., 2000, 'On the Dynamic Behavior of a Liquid Droplet Impacting upon an Inclined Heated Surface,' Experiments in Fluids, Vol.. 29, pp. 380-387   DOI
50 Harvie, D. J. E. and Fletcher, D. F., 2001, 'A Hydrodynamic and Thermodynamic Simulation of Droplet Impacts on Hot Surfaces, Part I: Theoretical Model,' International Journal of Heat and Mass Transfer, Vol.. 44, pp.2633-2642   DOI   ScienceOn