2009
DOI: 10.1016/j.expthermflusci.2009.01.002
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Flow boiling heat transfer of R134a, R236fa and R245fa in a horizontal 1.030mm circular channel

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Cited by 124 publications
(44 citation statements)
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“…As such, new diabatic flow regime maps for flow boiling in micro-and minichannels have been developed (22)(23)(24)(25)(26)(27). However, the mechanistic model of Taitel-Dukler is in good agreement with a variety of microchannel results from Bar-Cohen and Rahim (28), Rahim et al (29), and Triplett et al (30).…”
Section: Studies Of Flow Regimes and Flow Regime Mapssupporting
confidence: 47%
“…As such, new diabatic flow regime maps for flow boiling in micro-and minichannels have been developed (22)(23)(24)(25)(26)(27). However, the mechanistic model of Taitel-Dukler is in good agreement with a variety of microchannel results from Bar-Cohen and Rahim (28), Rahim et al (29), and Triplett et al (30).…”
Section: Studies Of Flow Regimes and Flow Regime Mapssupporting
confidence: 47%
“…Ong and Thome [56] However, it needs to be verified by a wide range of independent experimental data. As already mentioned, the correlation might predict the database globally but it does not mean that such a method is able to capture the heat transfer variation trends.…”
Section: Fundamental Issues Of Flow Boiling Heat Transfer In Microscamentioning
confidence: 99%
“…56 Analytical models for flow boiling in microscale channels are very complex, and the required assumptions to solve these models restrict the ability to capture the real physics of boiling mechanisms. Also, most empirical correlations are not able to predict other experimental data, even under a similar range of operating conditions where the correlations were obtained.…”
Section: Models Of Flow Boiling Heat Transfer For Specific Flow Regimmentioning
confidence: 99%
“…Baker [4], Hewitt and Roberts [5], and Taitel and Dukler [6] developed early flow regime maps for horizontal and vertical two-phase flow in channels with diameters of a few centimeters. In recent years, a few studies [7][8][9][10][11] have developed flow regime maps for boiling in microchannels using similar axes as conventional maps with flow regime definitions pertinent to microscale boiling, and have shown that flow regime maps developed for larger tubes are inapplicable for predicting flow regime transitions in microchannels. Flow regime maps for adiabatic two-phase flow in microchannels have also been proposed through high-speed visualizations [12][13][14];…”
Section: Introductionmentioning
confidence: 99%