Flow condensation heat transfer characteristics of hydrocarbon refrigerants and dimethyl ether inside a horizontal plain tube
Tài liệu tham khảo
Akers, 1959, Condensation heat transfer within horizontal tubes, Chem. Eng. Prog. Symp. Ser., 55, 171
Cavallini, A., Zecchin, R., 1974. A dimensionless correlation for heat transfer in forced convection condensation. In: Proceedings of the 5th International Heat Transfer Conference, vol. 3, pp. 309–313.
Cho, J.M., Kim, J.H., Yoon, S.H., Kim, M.S., 2005. Experimental studies on the evaporative heat transfer of R32/290 mixtures in a horizontal smooth tube. In: Proceedings of the SAREK 2005 Winter Annual Conference, vol. 05-W-042, pp. 268–273.
Choi, 2006, Boiling heat transfer characteristics of R-290 in horizontal smooth minichannel, Korean J. Air-Condition. Refrig. Eng., 18, 906
Dobson, 1998, Condensation in smooth horizontal tubes, ASME J. Heat Transfer, 120, 193, 10.1115/1.2830043
El Hajal, 2003, Condensation in horizontal tubes part 1: two-phase flow pattern map, Int. J. Heat Mass Transfer, 46, 3349, 10.1016/S0017-9310(03)00139-X
Global Environmental Change Report, 1997. A brief analysis of the Kyoto protocol. IX (24).
Int. Energy Agency’s Heat Pump Center, 2002. Informative fact sheet: hydrocarbons as refrigerants in residential heat pumps and air-conditioners.
Jung, 1989, Prediction of pressure drop during horizontal annular flow boiling of pure and mixed refrigerants, Int. J. Heat Mass Transfer, 32, 2435, 10.1016/0017-9310(89)90203-2
Jung, 1989, A study of flow boiling heat transfer with refrigerant mixture, Int. J. Heat Mass Transfer, 32, 1751, 10.1016/0017-9310(89)90057-4
Jung, 2000, Testing of propane/isobutane mixture in domestic refrigerators, Int. J. Refrig., 23, 517, 10.1016/S0140-7007(99)00084-5
Jung, 2003, Flow condensation heat transfer coefficients of pure refrigerants, Int. J. Refrig., 26, 4, 10.1016/S0140-7007(02)00082-8
Kline, 1953, Describing uncertainties in single-sample experiments, Mech. Eng., 75, 3
Kruse, H., 1996. The state of the art of the hydrocarbon technology in household refrigeration. In: Proceedings of the International Conference on Ozone Protection Technologies. Washington, DC, pp. 179–188.
Martinelli, 1948, Prediction of pressure drop during forced-circulation boiling of water, Trans. ASME, 70, 695
Park, 2005, Flow condensation heat transfer coefficient of R22, R134a propane, in aluminum multi-channel tube, Korean J. Air-Condition. Refrig. Eng., 17, 649
Shah, 1979, A general correlation for heat transfer during film condensation inside pipes, Int. J. Heat Mass Transfer, 22, 547, 10.1016/0017-9310(79)90058-9
Soliman, 1968, A general heat transfer correlation for annular flow condensation, ASME J. Heat Transfer, 90, 167
Thome, 2003, Condensation in horizontal tubes, part 2: new heat transfer model based on flow regimes, Int. J. Heat Mass Transfer, 46, 3365, 10.1016/S0017-9310(03)00140-6
Traviss, 1973, Forced convection condensation in tubes: a heat transfer correlation for condenser design, ASHRAE Trans., 79, 157
Wen, 2005, Evaporation heat transfer and pressure drop characteristics of R-290 (propane), R-600 (butane) and mixture of R-290/R-600 in the three-line serpentine small-tube bank, Appl. Therm. Eng., 25, 2921, 10.1016/j.applthermaleng.2005.02.013
Wen, 2006, Condensation heat transfer and pressure drop characteristics of R-290 (propane), R-600 (butane), and a mixture of R-290/R-600 in the serpentine small-tube bank, Appl. Therm. Eng., 26, 2045, 10.1016/j.applthermaleng.2005.10.001