Theoretical model for annular flow condensation in rectangular micro-channels

被引:86
作者
Kim, Sung-Min
Mudawar, Issam [1 ]
机构
[1] BTPFL, W Lafayette, IN 47907 USA
关键词
Condensation; Micro-channel; Annular model; Eddy diffusivity; MICROCHANNEL HEAT SINKS; 2-PHASE PRESSURE-DROP; TURBULENT LIQUID-FILMS; TRANSFER COEFFICIENT; HORIZONTAL TUBES; VERTICAL TUBES; SMOOTH TUBES; FLUID-FLOW; AIR-WATER; PART;
D O I
10.1016/j.ijheatmasstransfer.2011.10.014
中图分类号
O414.1 [热力学];
学科分类号
摘要
This study examines the pressure drop and heat transfer characteristics of annular condensation in rectangular micro-channels with three-sided cooling walls. A theoretical control-volume-based model is proposed based on the assumptions of smooth interface between the annular liquid film and vapor core, and uniform film thickness around the channel's circumference. Mass and momentum conservation are applied to control volumes encompassing the liquid film and the vapor core separately. The model accounts for interfacial suppression of turbulent eddies due to surface tension with the aid of a new eddy diffusivity model specifically tailored to shear-driven turbulent films. The model predictions are compared with experimental pressure drop and heat transfer data for annular condensation of FC-72 along 1 x 1 mm(2) parallel channels. The condensation is achieved by rejecting heat to a counterflow of water. The data span FC-72 mass velocities of 248-367 kg/m(2) s, saturation temperatures of 57.8-62.3 degrees C, qualities of 0.23-1.0, and water mass flow rates of 3-6 g/s. The data are also compared to predictions of previous separated flow mini/micro-channel and macro-channel correlations. While some of the previous correlations do provide good predictions of the average heat transfer coefficient, they fail to capture axial variation of the local heat transfer coefficient along the channel. The new model accurately captures the pressure drop and heat transfer coefficient data in both magnitude and trend, evidenced by mean absolute error values of 3.6% and 9.3%, respectively. (C) 2011 Elsevier Ltd. All rights reserved.
引用
收藏
页码:958 / 970
页数:13
相关论文
共 47 条
[1]  
Akers W.W., 1958, Chem. Engr. Prog, V54, P89
[2]   Condensation of halogenated refrigerants inside smooth tubes [J].
Cavallini, A ;
Censi, G ;
Del Col, D ;
Doretti, L ;
Longo, GA ;
Rossetto, L .
HVAC&R RESEARCH, 2002, 8 (04) :429-451
[3]  
Cavallini A., 1974, P 6 INT HEAT TRANSFE, V3, P309, DOI DOI 10.1615/IHTC5.1220
[4]   Two-phase pressure drop of air-water and R-410A in small horizontal tubes [J].
Chen, IY ;
Yang, KS ;
Chang, YJ ;
Wang, CC .
INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2001, 27 (07) :1293-1299
[5]   Condensation in smooth horizontal tubes [J].
Dobson, MK ;
Chato, JC .
JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 1998, 120 (01) :193-213
[6]  
FRIEDEL L, 1979, EUR 2 PHAS GROUP M I
[7]   Influence of oil on flow condensation heat transfer of R410A inside 4.18 mm and 1.6 mm inner diameter horizontal smooth tubes [J].
Huang, Xiangchao ;
Ding, Guoliang ;
Hu, Haitao ;
Zhu, Yu ;
Peng, Hao ;
Gao, Yifeng ;
Deng, Bin .
INTERNATIONAL JOURNAL OF REFRIGERATION-REVUE INTERNATIONALE DU FROID, 2010, 33 (01) :158-169
[8]   HEAT-TRANSFER ACROSS A TURBULENT FALLING FILM WITH COCURRENT VAPOR FLOW [J].
HUBBARD, GL ;
MILLS, AF ;
CHUNG, DK .
JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 1976, 98 (02) :319-320
[9]   Forced convection boiling in a microchannel heat sink [J].
Jiang, LA ;
Wong, M ;
Zohar, Y .
JOURNAL OF MICROELECTROMECHANICAL SYSTEMS, 2001, 10 (01) :80-87
[10]   Investigation of two-phase flow pattern, void fraction and pressure drop in a microchannel [J].
Kawahara, A ;
Chung, PMY ;
Kawaji, M .
INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2002, 28 (09) :1411-1435