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Tytuł artykułu

Spreading of droplets of some chosen liquids on the flat, heated wall surface

Autorzy
Identyfikatory
Warianty tytułu
Konferencja
The Third International Conference on Transport Phenomena In Multiphase Systems (24-27 June, 2002; Kielce, Poland)
Języki publikacji
EN
Abstrakty
EN
The paper presents results of experimental research on the process of spreding liquid drolets on the surface of a flat, heated wall. The investigation was carried our for some chosen liquids: water, aniline, toluene, and benzene. The liquids were characterised withdifferent chemical-physical properties. The analysis was focused on the surface wetted by the droplet was determined by the wetting coefficient. Results of experimental research were then compared with results of calculations obtained from the model of Ueda modified by the author, and with results obtained from the model of Trela.
Słowa kluczowe
Rocznik
Tom
Strony
65--78
Opis fizyczny
Bibliogr. 20 poz., rys.
Twórcy
  • Technical University of Szczecin, Departament of Heat Engineering, al. Piastów 17, PL - 70-310 Szczecin
Bibliografia
  • 1. Zapałowicz Z., Interaction between a single water droplet and a flat, horizontal, hot surface. Proc. IMP'97 Conference on Modelling and Design in Fuid-Flow Machinery. Gdańsk, 18-21 November 1997, pp. 593-600.
  • 2. Bonacina C., Del Giudice S., Comini G., Dropwisc evaporation. Trans. of ASME, J. Heat Transfer, 101 (1979), pp. 441-446.
  • 3. Zapałowicz Z., Odparowanie grup kropel z płaskiej, poziomej powierzchni ścianki. Raport końcowy projektu badawczego KBN nr 8T10B05014. styczeń 2001, (rękopis).
  • 4. Seki M., Kawamura H., Sanakawa K., Transient temperature profile of a hot wall due to an impinging liquid droplet. Trans. ASME, J. Heat Transfer. 100 (1978), pp. 167-169.
  • 5. Chandra S., Avedisian C.T., On the collision of a droplet with a solid surface. Proc. Royal Society of London A 432 (1991), pp. 13-41.
  • 6. Guhman A.A., Volyniec A.Z. et. al., O temperature razrez'enogo potoka kapel’ otraz'ennyh ot nagretoj poverhnosti. Inz. Fiz. Zurnal. t.49, No. 5 (1984), pp. 731-736.
  • 7. Healy W.M., Hartley J.G., Abdel-Khalik S.I., Comparison between theoretical models and experimental data for spreading of liquid droplets impacting a solid surface. Int. J. Heat Mass Transfer 39 (1996), pp. 3079-3082.
  • 8. Healy W.M., Hartley J.G., Abdel-Khalik S.I., Surface wetting effects on the spreading of liquid droplets impacting a solid surface at low Weber numbers. Int. J. Heat Mass Transfer, 44 (2001), pp. 235-240.
  • 9. Kim H.-Y., Chun J-H., The recoiling of liqiud droplets upon collision with solid surfaces. Physics of Fluids, 13 (2001), pp. 643-659.
  • 10. Madejski J.: Solidification of droplets on a cold surface. Int. J. Heat Transfer. 19 (1976), pp. 1009-1013.
  • 11. Markworth A.J., Saunders J.H,. An improved velocity field for the Madejski splat-quench solidification model. Int. J. Heat Mass Transfer, 35(1992), pp. 1836-1837.
  • 12. Martyniuk M.M., Rol’ peregreva kapel’ v procesee nestacionamogo kapel'nogo ochlaz'denija vysokotemperaturnoj stenki. Inz. Fiz. Zumal, t. 51, No. I (1986), pp. 128-136.
  • 13. Pasandideh-Fard M., Bhola R., Chandra S., Mostaghimi J., Deposition of tin droplets on a steel palte: simulations and experiments. Int. J Heat Mass Transfer, 41 (1998), pp. 2929-2945.
  • 14. Sobolev V.V., Guilemany J.M., Martin A.J., Investigation of droplet flattening during thermal spraying. Surfaces and Coatings Technology 89 (1997), pp. 82-89.
  • 15. Tan Nguen Tyong, Kicvcov A.V., Cilikina N.V., K teorii deformacii kapli na gorizontal'noj poverchnosti. Teploenergetika. No. 10(1989), pp. 60-61.
  • 16. Trela M., Zagadnienia termo-hydrodynamiczne fazy ciekłej na ściance w przepływie dwufazowym. Zeszyty' Naukowe IMP PAN w Gdańsku 293/12I4/89, Gdańsk 1989.
  • 17. Ueda T., Enomoto T., Kanetsuki M., Heat transfer characteristics and dynamic behavior of saturated droplets; impinging on heated vertical surface. Bulletin of the JSME 22 (1979), pp. 724-732.
  • 18. Zapałowicz Z., An approximate method for calculation of the wetting parameter for horizontal surface. Proc. of the Eighth Symposium on Heat and mass Transfer, Białowieża, 1992, pp. 525-530.
  • 19. Zapałowicz Z., Spreading Ratio for Water Droplet. Advances in Engineering Heat Transfer. Proc. of the Second Baltic Heat Transfer Conference. Jurmala, Riga, Latvia, August 21-23, Computational Mechanics Publ. Boston 1995, pp. 617-626.
  • 20. Zapałowicz Z., Conditions for appearance of droplet structure on a horizontal heated surface for water and touene. Zbornik z XII. Medz. vedeckej konferencie, Aplikacia Experimentalnych a Numerickych metod v mechanike Tekutin, Rajecke Teplice, Slovensko 27.4-28.4.20000, pp. 240-245.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSW2-0006-0007
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