Title of article :
Prediction method for flow boiling heat transfer in a herringbone microfin tube
Author/Authors :
Wellsandt، نويسنده , , S. and Vamling، نويسنده , , L.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Pages :
9
From page :
912
To page :
920
Abstract :
Based on experimental data for R134a, the present work deals with the development of a prediction method for heat transfer in herringbone microfin tubes. As is shown in earlier works, heat transfer coefficients for the investigated herringbone microfin tube tend to peak at lower vapour qualities than in helical microfin tubes. Correlations developed for other tube types fail to describe this behaviour. A hypothesis that the position of the peak is related to the point where the average film thickness becomes smaller than the fin height is tested and found to be consistent with observed behaviour. The proposed method accounts for this hypothesis and incorporates the well-known Steiner and Taborek correlation for the calculation of flow boiling heat transfer coefficients. The correlation is modified by introducing a surface enhancement factor and adjusting the two-phase multiplier. Experimental data for R134a are predicted with an average residual of 1.5% and a standard deviation of 21%. Tested against experimental data for mixtures R410A and R407C, the proposed method overpredicts experimental data by around 60%. An alternative adjustment of the two-phase multiplier, in order to better predict mixture data, is discussed.
Keywords :
Corrélation , R407C , ةbullition en écoulement , heat transfer , Mass transfer , Microfin tube , Geometry , Experiment , Transfert de masse , R407C , R410A , R134a , Géométrie , ةbullition en écoulement , R134a , R410A , Expérimentation , Transfert de chaleur , Tube a microailettes , Correlation
Journal title :
International Journal of Refrigeration
Serial Year :
2005
Journal title :
International Journal of Refrigeration
Record number :
1340005
Link To Document :
بازگشت