참고문헌
- Fujii, K.; Itoh, N.; Innnami, T.; Kimura, H.; Nakayama N.; Yanugidi, T. 'Heat transfer pipe', US patent 4044797, assigned Hitachi Ltd, 1977
- Haraguchi, H.; Koyama, S.; Esaki, J.; Fujii, T. 'Condensation heat transfer of refrigerants HFC134a, HCFC123 and HCFC22 in horizontal smooth tube and a horizontal microfin tube', Proc., 30th National Symposia of Japan, Yokohama, 1993, 343-345
- Kedzierski, M.A.; Goncaves, J.M. 'Horizontal convective condensation of alternative refrigerant within a micro-fin tube', [NISTIR 6095], Gaithersburg (MD USA), NIST, 1997
- Pierre, B. 'Flow resistance with boiling refrigerants', ASHRAE J. September, Part 1, 1964, 58-65
- Cavallini, A.; Del Col D.; Doretti, L.; Longo, G.A.; Rossetto, L. 'Pressure drop during condensation and vaporization of refrigerants inside enhanced tube', Heat and Technology, 1997, 15, 3-10
- Friedel, L. 'Improved friction pressure drop correlation for horizontal and vertical two-phase pipe flow', European two phase flow group meeting, Ispra, Italy, Paper E2, 1979
- Newell, T.A.; Shah, R.K. 'Refrigerant heat transfer, pressure drop, and void fraction effects in microfin tubes', Proceeding 2nd International Symposia on Two-Phase Flow and Experimentation, vol. 3, Edizioni ETS, Italy, 1999, 1623-1639
- Souza, A.L.; Pimenta, M.M. 'Prediction of Pressure drop during horizontal two-phase flow of pure and mixed refrigerants', ASME Conference, Cavitation and multiphase flow, HTD-210, 1995, 161-171
- Choi, J.Y. 'Study on the prediction of pressure drop for condensation and evaporation of alternative refrigerants in micro-fin tube', Yonsei University, Seoul, Korea, 1999
- Choi, J.Y.; Kedzierski, M.A.; Domanski, P.A. 'Generalized pressure drop correlation for evaporation and condensation in smooth and microfin tube', International Proceeding of IIF-IIR Commision B1, Paderborn, Germany, 2001, B4, 9-16
- Kim, C.D.; Park, I.H.; Lee, J. 'Prediction and experiment of pressure drop of R22, R407C and R410A on design conditions of condenser', Korean J. Air-Conditioning and Refrigeration Engineering, 2004, 16(1), 42-53
- Kim, C.D.; Jeon, C.D.; Lee, J. 'Evaluation of airside heat transfer and friction characteristics on design conditions of condenser', Korean J. Air- Conditioning and Refrigeration Engineering, 2003, 15(3), 220-229
- ASHRAE, Fundamental Handbook (SI), 1993
- McLinden, M.O.; Klein, S.A.; Lemmon, E.W.; Peskin, A.P. 'Thermodynamic and transport properties of refrigerants and refrigerant mixtures database (REFPROP)', Ver. 6.01, NIST, 1998
- Collier, J.G.; Thome, J.R. 'Convective Boiling and Condensation', 3rd edition, Oxford University Press, 1994, 34-83
- Carnavos, T.C. 'Heat transfer performance of internally finned tube', Heat Transfer Engineering, 1980, 4, 32
- Kuo, C.C.; Wang, C.C. 'In-tube evaporation of HCFC-22 in a 9.52 mm micro/smooth tube', Int. J. Heat and Mass Transfer, 1996, 39, 2259-2269
- Geary, F.D. 'Return bend pressure drop in refrigeration system' ASHRAE Transactions, No. 1975, 2342, 252- 265
- Ito, H. 'Pressure loses in smooth pipe bends', Transaction of ASME, 1960, 3, 135
- Schlager, L.M.; Pate, M.B.; Bergles, A.E. 'Heat transfer and pressure drop during evaporation and condensation of R-22 in horizontal micro-fin tubes', Int. J. Refrigeration, 1989, 12, 6-14
- Fisher, S.K.; Rice, C.K. 'The Oak Ridge heat pump models: I, A steady-state computer design model for air-to-air heat pumps', ORNL/CON-80/R1, Oak Ridge National Lab, 1980
- Jung, D.S.; Radermacher, R. 'Performance simulation of single-evaporator domestic refrigerants charged with pure and mixed refrigerants', Int. J. Refrigerant, 1991, 14, 223-232 https://doi.org/10.1016/0140-7007(91)90007-4
- Cavallini, A.; Censi, D.; Del Col, L.; Doretti, L.; Longo, G.A.; Rossetto, L. 'Experimental investigation on condensation heat transfer and pressure drop of new HFC refrigerants', Int. J. Refrigeration, 2001, 24, 73-87 https://doi.org/10.1016/S0140-7007(00)00070-0