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Tytuł artykułu

A semi-empirical method for calculation of heat transfer coefficient in flow boiling for conventional tubes and minichanels

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In the paper presented has been a modified semi empirical correlation of Mikielewicz [7] enabling calculations of heat transfer coefficient in flow boiling in small diameter channels. The changes were of qualitative character as the entirely new data bank of experimental data points has been collected to devise a new form of correlation applicable to small diameter channels. The fluids considered were: R141b, R12 and R11 and the total number of experimental point considered amounted to over 210. The correction incorporates the surface tension effects into the two-phase flow multiplier as well as the convective number was amended. The use of correlation is very simple on account of its analytical form, which is its fundamental advantage. It is of general character, and its coefficients do not depend on the type of fluid. Comparisons with experimental data show good agreement.
Rocznik
Strony
13--22
Opis fizyczny
Wz., wykr.,Bibliogr. 14 poz.,
Twórcy
  • Technical Uuniversity of Gdańsk, Faculty of Mechanical Engineering, 80-952 Gdańsk, Narutowicza 11/12
Bibliografia
  • [1] BAO, Z.Y.; FLETCHER, D.F.; HAYNES, B.S.: Flow boiling heat transfer of Freon R11 and HCFC123 in narrow passages, Int. J. of Heat and Mass Transfer, Vol.43, 2000, 3347-3358.
  • [2] BERGLES A,E., LIENHARD V J.H., KENDALL G.E., GRIFFITH P.: Boiling and Evaporation in Small Diameter Channels, Heat Transfer Engineering, vol. 24 , 18-40, 2003.
  • [3] HERWIG H., HAUSNER H.: Critical view on „new results in micro-fluid mechanics”: an example, J. Heat and Mass Transfer, Vol. 46, 935-937, 2003.
  • [4] KANDLIKAR S.G.: Fundamental issues related to flow boiling in minichannels and microchannels, Proc. Experimental Heat Transfer, Fluid Mechanics and Thermodynamics, 129-146, Thesalloniki 200l.
  • [5] KEW P., CORNWELL K.: Correlations for the prediction of boiling heat transfer in small diameter channels, Applied Thermal Engineering, Vol. 17, No. 8-10, 1997, 705-715.
  • [6] LIN S. ET AL.: Two-phase heat transfer to a refrigerant in a 1 mm diameter tube, Int. J. of Refrigeration, 24 (2001), 51-56.
  • [7] MIKIELEWICZ J: Semi-empirical method of determining the heat transfer coefficient for subcooled saturated boiling in a channel, Int. J. Heat Transfer, 17, 1973, 1129-1134.
  • [8] MIKIELEWICZ J., IWICKI J., MIKIELEWICZ D.; A general correlation for saturated freon flow boiling in a horizontal tube, Proc. 1st Baltic Heat Transfer Conf., Recent Advances in Heat 'Transfer, Ed. B. Sunden and A. Zukauskas, Elsevier Science Publishers, Goteborg 1992.
  • [9] MIKIELEWICZ D., MIKIELEWICZ J.: Modelling of flow boiling process in small diameter tubes, Proc. of the ASME-ZSIS, Int. Thermal Science Seminar II. Ed. A.E. Bergles, I. Golobic, C.H. Amon, A. Bejan. Bled, Slovenia, June 13-16, 2004.
  • [10] MIKIELEWICZ D., MIKIELEVVICZ J .: Improved correlation for modelling of boiling processes in small diameter tubes, submitted and accepted for presentation in 4th, Int. Conf. on Multiphase Flows with Change of Phase, Gdańsk, 26-30 June 2005.
  • [11] MULLER-STEINHAGEN R., HECK K.: A simple friction pressure drop correlation for two-phase flow in pipes, Chem. Eng. Progress, 1986, No.20.
  • [12] OULD DIDI M.B., KATTAN N., THOME J.R.: Prediction of two-phase pressure gradients of refrigerants in horizontal tubes, Int. J. of Refrigeration, Vol. 25, 2002, 935-947.
  • [13] THOME J.R.: Boiling of new refrigerants: a state-of-the-art review, Int. J. Refrig., Vol. 19, 1996, No. 7, 435-457.
  • [14] TRAN T.N., WAMBSGANSS M.W., FRANCE D.M.; Small circular and rectangular channel boiling with two refrigerants, Int. J. Multiphasc Flow, Vol. 22, 1996, N0. F3, 485-498.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BGPK-1546-6110
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