SlideShare a Scribd company logo
1 of 21
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ.
Boiling heat transfer of R-22, R-134a, and CO2
in horizontal smooth minichannels*
Kwang-Il Choia, A.S. Pamitran a, Chun-Young Oh b, Jong-Taek Oh c,*
A Graduate School, Chonnam National University, San 96-1, Dunduk-Dong, Yeosu, Chonnam 550-749, Republic of Korea
B Refrigeration Research Institute, Chonnam National University, San 96-1, Dunduk-Dong, Yeosu, Chonnam 550-749, Republic of Korea
C Department of Refrigeration and Air Conditioning Engineering, Chonnam National University, San 96-1,
Dunduk-Dong, Yeosu, Chonnam 550-749, Republic of Korea
Sudheer Nandi
(Ph.D.),M.Tech,MBA.
Sustainable Energy . S.korea
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 2
• http://www.sciencedirect.com/science/article/pii/S0140700702000403#
http://www.youtube.com/watch?v=s-YmfZNKnlU
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 3
Qualitative classification flow regimes
.
MIT Department of Nuclear Science and Engineering
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 4
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 5
Heat transfer and flow regimes in a vertical heated channel. (Thermal non‐equilibrium effec
ts have been neglected in sketching the bulk temperature)
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ.
Abstract
• This study examined convective boiling heat transfer in horizontal minichannels using R-22, R-134a, and CO2.
• The local heat transfer coefficients were obtained for heat fluxes ranging from 10 to 40 kW 𝑚 −2
, mass fluxes
ranging from 200 to 600 kg 𝑚−2
𝑠 −1
, a saturation temperature of 10 °C, and quality up to 1.0.
• The test section was made of stainless steel tubes with inner diameters of 1.5 mm and 3.0 mm, and a length of
2000 mm. The section was heated uniformly by applying an electric current to the tubes directly.
• Nucleate boiling heat transfer was the main contribution, particularly at the low quality region.
• An increasing and decreasing heat transfer coefficient occurred at the lower vapor quality with increasing heat flux
and mass flux.
• The mean heat transfer coefficient ratio of R-22:R-134a:CO2 was approximately 1.0:0.8:2.0. Laminar flow was
observed in the minichannels.
• A new boiling heat transfer coefficient correlation based on the superposition model for refrigerants in
minichannels was developed with a mean deviation of 11.21%.
Keywords: Refrigerant; R-22; R-134a; R-744; Carbon dioxide; Experiment; Heat transfer; Boiling; Micro channel;
smooth tube; Horizontal tube
6
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 7
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 8
Experimental apparatus
The experimental test facility and test section.
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ.
Experimental conditions
9
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 10
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 11
The effect of mass flux on heat transfer coefficient: (a)R-22, (b) R-134a, and
(c) CO2
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ.
The experimental data on Wojtan et al. [20] flow pattern map for R-22.
12
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 13
The effect of heat flux on heat transfer coefficient: (a) R-22,(b) R-134a, and (c) CO2.
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 14
The comparison of the heat transfer coefficient
The effect of inner tube diameter on heat transfer
coefficient for R-22.
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 15
Development of a new correlation
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 16
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 17
Two-phase heat transfer multiplier as a function of ∅2
𝑓
Diagram of the experimental heat transfer coefficient, hexp.,
vs prediction heat transfer coefficient, hpred.
Heat transfer coefficient comparisonNucleate boiling contribution
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 18
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ.
References
[1] Z.Y. Bao, D.F. Fletcher, B.S. Haynes, Flow boiling heat transfer of freon R11 and HCFC123 in narrow passages, Int. J.Heat Mass Transfer 43 (2000) 3347e3358.
[2] W. Zhang, T. Hibiki, K. Mishima, Correlation for flow boiling heat transfer in mini-channels, Int. J. Heat Mass Transfer 47 (2004) 5749e5763.
[3] S.G. Kandlikar, M.E. Steinke, Predicting heat transfer during flow boiling in minichannels and microchannels, ASHRAE Trans. CH-03-13-1 (2003) 667e67
6.
[4] T.N. Tran, M.W. Wambsganss, D.M. France, Small circularand rectangular-channel boiling with two refrigerants, Int. J. Multiphase Flow 22 (3) (1996) 48
5e498.
[5] J. Pettersen, Flow vaporization of CO2 in microchannels tubes, Exp. Therm. Fluid Sci. 28 (2004) 111e121. [6] C.Y. Park, P.S. Hrnjak, Flow boiling heat transfer of
CO2 at low temperatures in a horizontal smooth tube, ASME Trans. 127 (2005) 1305e1312.
[7] Y. Zhao, M. Molki, M.M. Ohadi, S.V. Dessiatoun, Flow boiling of CO2 in microchannels (DA-00-2-1), ASHRAE Trans. (2000) 437e445.
[8] R. Yun, Y. Kim, M.S. Kim, Convective boiling heat transfer characteristics of CO2 in microchannels, Int. J. Heat. Mass Transfer 48 (2005) 235e242.
[9] S.H. Yoon, E.S. Cho, Y.W. Hwang, M.S. Kim, K. Min, Y. Kim, Characteristics of evaporative heat transfer and pressure drop of carbon dioxide and correlation dev
elopment, Int. J. Refrigeration 27 (2004) 111e119.
[10] A.S. Pamitran, K.I. Choi, J.T. Oh, H.K. Oh, Forced convective boiling heat transfer of R-410A in horizontal minichannels, Int. J. Refrigeration 30 (2007) 155e165.
[11] J.P. Wattelet, J.C. Chato, A.L. Souza, B.R. Christoffersen, Evaporative characteristics of R-12, R-134a, and a mixture at low mass fluxes, ASHRAE Trans
. 94-2-1 (1994) 603e615.
[12] D.S. Jung, M. McLinden, R. Radermacher, D. Didion, A study of flow boiling heat transfer with refrigerant mixtures, Int. J. Heat Mass Transfer 32 (9) (1
989) 1751e1764.
[13] M.M. Shah, Chart correlation for saturated boiling heat transfer: equations and further study, ASHRAE Trans. 2673 (1988) 185e196.
[14] K.E. Gungor, H.S. Winterton, Simplified general correlation for saturated flow boiling and comparisons of correlations with data, Chem. Eng. Res. 65 (19
87) 148e156.
19
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ.
[15] J.C. Chen, A correlation for boiling heat transfer to saturated fluids in convective flow, Ind. Eng. Chem. Process Des. Dev. 5 (1966) 322e329.
[16] C.S. Kuo, C.C. Wang, In-tube evaporation of HCFC-22 in a 9.52 mm micro-fin/smooth tube, Int. J. Heat Mass Transfer 39 (1996) 2559e2569.
[17] P.A. Kew, K. Cornwell, Correlations for the prediction of boiling heat transfer in small-diameter channels, Appl. Therm. Eng. 17 (8e10) (1997) 705e715.
[18] G.M. Lazarek, S.H. Black, Evaporative heat transfer, pressure drop and critical heat flux in a small diameter vertical tube with R-113, Int. J. Heat Mass Transfe
r 25 (1982) 945e960.
[19] M.W. Wambsganss, D.M. France, J.A. Jendrzejczyk, T.N. Tran, Boiling heat transfer in a horizontal small-diameter tube, J. Heat Transfer 115 (1993) 963e975
[20] L. Wojtan, T. Ursenbacher, J.R. Thome, Investigation of flow boiling in horizontal tubes: part I e a new diabatic two-phase flow pattern map, Int. J.
Heat Mass Transfer 48 (2005)2955e2969.
[21] N. Kattan, J.R. Thome, D. Favrat, Flow boiling in horizontal tubes: part 1 e development of a diabatic two-phase flow pattern map, J. Heat Transfer 120 (1998)
140e147.
[22] D. Steiner, Heat transfer to boiling saturated liquids, in:Verein Deutcher Ingenieure (Ed.), VDI-Wa¨rmeatlas. (VDI Heat Atlas), VDI-Gessellschaft Verfahrenst
echnik und Chemieinge nieurwesen (GCV), Du¨sseldorf, Germany, 1993 (J.W. Fullarton, translator).
[23] Y.Y. Yan, T.F. Lin, Evaporation heat transfer and pressure drop of refrigerant R-134a in a small pipe, Int. J. Heat Mass Transfer 41 (1998) 4183e4194.
[24] M.G. Cooper, Heat flow rates in saturated nucleate pool boiling e a wide-ranging examination using reduced properties, Advances in Heat Transfer 16 (1984) 1
57e239 (Academic Press).
[25] K. Stephan, M. Abdelsalam, Heat-transfer correlations for natural convection boiling, Int. J. Heat Mass Transfer 23 (1980) 73e87.
[26] D. Chisholm, A theoretical basis for the LockharteMartinelli correlation for two-phase flow, Int. J. Heat Mass Transfer 10 (1967) 1767e1778.
[27] D. Jung, Y. Kim, Y. Ko, K. Song, Nucleate boiling heat transfer coefficients of pure halogenated refrigerants, Int. J. Refrigeration 26 (2003) 240e248.
20
Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 21
Thank you for listening

More Related Content

What's hot

Study of Forced Convection Heat Transfer with Single phase and mixture phase ...
Study of Forced Convection Heat Transfer with Single phase and mixture phase ...Study of Forced Convection Heat Transfer with Single phase and mixture phase ...
Study of Forced Convection Heat Transfer with Single phase and mixture phase ...IOSRJMCE
 
Effect of Chemical Reaction and Radiation Absorption on Unsteady Convective H...
Effect of Chemical Reaction and Radiation Absorption on Unsteady Convective H...Effect of Chemical Reaction and Radiation Absorption on Unsteady Convective H...
Effect of Chemical Reaction and Radiation Absorption on Unsteady Convective H...IJMER
 
EXPERIMENTAL INVESTIGATION ON BOILING HEAT TRANSFER USING R134A
EXPERIMENTAL INVESTIGATION ON BOILING HEAT TRANSFER USING R134AEXPERIMENTAL INVESTIGATION ON BOILING HEAT TRANSFER USING R134A
EXPERIMENTAL INVESTIGATION ON BOILING HEAT TRANSFER USING R134AJournal For Research
 
Experimental study of heat transfer in pulsating turbulent flow in a pipe
Experimental study of heat transfer in pulsating turbulent flow in a pipeExperimental study of heat transfer in pulsating turbulent flow in a pipe
Experimental study of heat transfer in pulsating turbulent flow in a pipeMohamed Fadl
 
Experimental Study of Heat Transfer in Pulsating Turbulent Flow in a Pipe
Experimental Study of Heat Transfer in Pulsating   Turbulent Flow in a Pipe Experimental Study of Heat Transfer in Pulsating   Turbulent Flow in a Pipe
Experimental Study of Heat Transfer in Pulsating Turbulent Flow in a Pipe Mohamed Fadl
 
EXPERIMENTAL ANALYSIS OF HEAT TRANSFER AND FLUID FLOW IN MICRO-CHANNEL HEAT SINK
EXPERIMENTAL ANALYSIS OF HEAT TRANSFER AND FLUID FLOW IN MICRO-CHANNEL HEAT SINKEXPERIMENTAL ANALYSIS OF HEAT TRANSFER AND FLUID FLOW IN MICRO-CHANNEL HEAT SINK
EXPERIMENTAL ANALYSIS OF HEAT TRANSFER AND FLUID FLOW IN MICRO-CHANNEL HEAT SINKijmech
 
Sinusoidal Model Development for the Study of Diurnal Variation of Surface Ai...
Sinusoidal Model Development for the Study of Diurnal Variation of Surface Ai...Sinusoidal Model Development for the Study of Diurnal Variation of Surface Ai...
Sinusoidal Model Development for the Study of Diurnal Variation of Surface Ai...inventionjournals
 
Mass transfer operations
Mass transfer operationsMass transfer operations
Mass transfer operationsJagdeesh Shukla
 
Effect of Radiation on Mixed Convection Flow of a Non-Newtonian Nan fluid ove...
Effect of Radiation on Mixed Convection Flow of a Non-Newtonian Nan fluid ove...Effect of Radiation on Mixed Convection Flow of a Non-Newtonian Nan fluid ove...
Effect of Radiation on Mixed Convection Flow of a Non-Newtonian Nan fluid ove...IJMER
 
Ht2009 88113
Ht2009 88113Ht2009 88113
Ht2009 88113YeseLeon
 
NUMERICAL INVESTIGATION OF LAMINAR NANOFLUID FLOW IN MICRO CHANNEL HEAT SINKS
NUMERICAL INVESTIGATION OF LAMINAR NANOFLUID FLOW IN MICRO CHANNEL HEAT SINKS NUMERICAL INVESTIGATION OF LAMINAR NANOFLUID FLOW IN MICRO CHANNEL HEAT SINKS
NUMERICAL INVESTIGATION OF LAMINAR NANOFLUID FLOW IN MICRO CHANNEL HEAT SINKS IAEME Publication
 
An experimental study on kerosene based pulse detonation engine
An experimental study on kerosene based pulse detonation engineAn experimental study on kerosene based pulse detonation engine
An experimental study on kerosene based pulse detonation engineIAEME Publication
 
NUMERICAL INVESTIGATION OF NATURAL CONVECTION HEAT TRANSFER FROM CIRCULAR CYL...
NUMERICAL INVESTIGATION OF NATURAL CONVECTION HEAT TRANSFER FROM CIRCULAR CYL...NUMERICAL INVESTIGATION OF NATURAL CONVECTION HEAT TRANSFER FROM CIRCULAR CYL...
NUMERICAL INVESTIGATION OF NATURAL CONVECTION HEAT TRANSFER FROM CIRCULAR CYL...IAEME Publication
 
Global Sea Level Linked To Global Temperature
Global Sea Level Linked To Global TemperatureGlobal Sea Level Linked To Global Temperature
Global Sea Level Linked To Global Temperatureireportergr
 
Radiation and Mass Transfer Effects on MHD Natural Convection Flow over an In...
Radiation and Mass Transfer Effects on MHD Natural Convection Flow over an In...Radiation and Mass Transfer Effects on MHD Natural Convection Flow over an In...
Radiation and Mass Transfer Effects on MHD Natural Convection Flow over an In...IJMER
 

What's hot (20)

Writing Sample2
Writing Sample2Writing Sample2
Writing Sample2
 
Study of Forced Convection Heat Transfer with Single phase and mixture phase ...
Study of Forced Convection Heat Transfer with Single phase and mixture phase ...Study of Forced Convection Heat Transfer with Single phase and mixture phase ...
Study of Forced Convection Heat Transfer with Single phase and mixture phase ...
 
Effect of Chemical Reaction and Radiation Absorption on Unsteady Convective H...
Effect of Chemical Reaction and Radiation Absorption on Unsteady Convective H...Effect of Chemical Reaction and Radiation Absorption on Unsteady Convective H...
Effect of Chemical Reaction and Radiation Absorption on Unsteady Convective H...
 
EXPERIMENTAL INVESTIGATION ON BOILING HEAT TRANSFER USING R134A
EXPERIMENTAL INVESTIGATION ON BOILING HEAT TRANSFER USING R134AEXPERIMENTAL INVESTIGATION ON BOILING HEAT TRANSFER USING R134A
EXPERIMENTAL INVESTIGATION ON BOILING HEAT TRANSFER USING R134A
 
Experimental study of heat transfer in pulsating turbulent flow in a pipe
Experimental study of heat transfer in pulsating turbulent flow in a pipeExperimental study of heat transfer in pulsating turbulent flow in a pipe
Experimental study of heat transfer in pulsating turbulent flow in a pipe
 
Experimental Study of Heat Transfer in Pulsating Turbulent Flow in a Pipe
Experimental Study of Heat Transfer in Pulsating   Turbulent Flow in a Pipe Experimental Study of Heat Transfer in Pulsating   Turbulent Flow in a Pipe
Experimental Study of Heat Transfer in Pulsating Turbulent Flow in a Pipe
 
Poster oslo 2010 (v2)
Poster oslo 2010 (v2)Poster oslo 2010 (v2)
Poster oslo 2010 (v2)
 
EXPERIMENTAL ANALYSIS OF HEAT TRANSFER AND FLUID FLOW IN MICRO-CHANNEL HEAT SINK
EXPERIMENTAL ANALYSIS OF HEAT TRANSFER AND FLUID FLOW IN MICRO-CHANNEL HEAT SINKEXPERIMENTAL ANALYSIS OF HEAT TRANSFER AND FLUID FLOW IN MICRO-CHANNEL HEAT SINK
EXPERIMENTAL ANALYSIS OF HEAT TRANSFER AND FLUID FLOW IN MICRO-CHANNEL HEAT SINK
 
Lecture 03: STKM3212
Lecture 03: STKM3212Lecture 03: STKM3212
Lecture 03: STKM3212
 
Sinusoidal Model Development for the Study of Diurnal Variation of Surface Ai...
Sinusoidal Model Development for the Study of Diurnal Variation of Surface Ai...Sinusoidal Model Development for the Study of Diurnal Variation of Surface Ai...
Sinusoidal Model Development for the Study of Diurnal Variation of Surface Ai...
 
Mass transfer operations
Mass transfer operationsMass transfer operations
Mass transfer operations
 
Effect of Radiation on Mixed Convection Flow of a Non-Newtonian Nan fluid ove...
Effect of Radiation on Mixed Convection Flow of a Non-Newtonian Nan fluid ove...Effect of Radiation on Mixed Convection Flow of a Non-Newtonian Nan fluid ove...
Effect of Radiation on Mixed Convection Flow of a Non-Newtonian Nan fluid ove...
 
Ht2009 88113
Ht2009 88113Ht2009 88113
Ht2009 88113
 
NUMERICAL INVESTIGATION OF LAMINAR NANOFLUID FLOW IN MICRO CHANNEL HEAT SINKS
NUMERICAL INVESTIGATION OF LAMINAR NANOFLUID FLOW IN MICRO CHANNEL HEAT SINKS NUMERICAL INVESTIGATION OF LAMINAR NANOFLUID FLOW IN MICRO CHANNEL HEAT SINKS
NUMERICAL INVESTIGATION OF LAMINAR NANOFLUID FLOW IN MICRO CHANNEL HEAT SINKS
 
An experimental study on kerosene based pulse detonation engine
An experimental study on kerosene based pulse detonation engineAn experimental study on kerosene based pulse detonation engine
An experimental study on kerosene based pulse detonation engine
 
NUMERICAL INVESTIGATION OF NATURAL CONVECTION HEAT TRANSFER FROM CIRCULAR CYL...
NUMERICAL INVESTIGATION OF NATURAL CONVECTION HEAT TRANSFER FROM CIRCULAR CYL...NUMERICAL INVESTIGATION OF NATURAL CONVECTION HEAT TRANSFER FROM CIRCULAR CYL...
NUMERICAL INVESTIGATION OF NATURAL CONVECTION HEAT TRANSFER FROM CIRCULAR CYL...
 
Global Sea Level Linked To Global Temperature
Global Sea Level Linked To Global TemperatureGlobal Sea Level Linked To Global Temperature
Global Sea Level Linked To Global Temperature
 
30120140505022
3012014050502230120140505022
30120140505022
 
Radiation and Mass Transfer Effects on MHD Natural Convection Flow over an In...
Radiation and Mass Transfer Effects on MHD Natural Convection Flow over an In...Radiation and Mass Transfer Effects on MHD Natural Convection Flow over an In...
Radiation and Mass Transfer Effects on MHD Natural Convection Flow over an In...
 
A8
A8A8
A8
 

Viewers also liked (16)

Fall2011 jalowiec
Fall2011 jalowiecFall2011 jalowiec
Fall2011 jalowiec
 
CONDENSATION
CONDENSATIONCONDENSATION
CONDENSATION
 
Steam Engineering basics
Steam Engineering basicsSteam Engineering basics
Steam Engineering basics
 
Boiling Heat Transfer
Boiling Heat TransferBoiling Heat Transfer
Boiling Heat Transfer
 
Boiling heat transfer
Boiling heat transferBoiling heat transfer
Boiling heat transfer
 
Mathcad Functions for Boiling heat transfer
Mathcad Functions for Boiling heat transferMathcad Functions for Boiling heat transfer
Mathcad Functions for Boiling heat transfer
 
ANALYSIS OF BOILING CURVE AND FORCED CONVECTION BOILING
ANALYSIS OF BOILING CURVE AND FORCED CONVECTION BOILINGANALYSIS OF BOILING CURVE AND FORCED CONVECTION BOILING
ANALYSIS OF BOILING CURVE AND FORCED CONVECTION BOILING
 
Steam traps
Steam trapsSteam traps
Steam traps
 
Boiling heat transfer
Boiling heat transfer Boiling heat transfer
Boiling heat transfer
 
Condensation
CondensationCondensation
Condensation
 
Valves and types deataildescription
Valves and types deataildescriptionValves and types deataildescription
Valves and types deataildescription
 
Boiling & condensation
Boiling & condensationBoiling & condensation
Boiling & condensation
 
Steam Basics
Steam BasicsSteam Basics
Steam Basics
 
Traps
TrapsTraps
Traps
 
Evaporation presentation
Evaporation presentationEvaporation presentation
Evaporation presentation
 
Basic Control Valve Sizing and Selection
Basic Control Valve Sizing and SelectionBasic Control Valve Sizing and Selection
Basic Control Valve Sizing and Selection
 

Similar to Boiling heat transfer r22

Parametric Studies On Heat Transfer by Natural Convection from Inclined Cylin...
Parametric Studies On Heat Transfer by Natural Convection from Inclined Cylin...Parametric Studies On Heat Transfer by Natural Convection from Inclined Cylin...
Parametric Studies On Heat Transfer by Natural Convection from Inclined Cylin...IRJET Journal
 
Research Inventy : International Journal of Engineering and Science
Research Inventy : International Journal of Engineering and ScienceResearch Inventy : International Journal of Engineering and Science
Research Inventy : International Journal of Engineering and Scienceinventy
 
Analisis critical heat flux dalam celah sempit rektangular vertikal rev 02
Analisis critical heat flux dalam celah sempit rektangular vertikal rev 02Analisis critical heat flux dalam celah sempit rektangular vertikal rev 02
Analisis critical heat flux dalam celah sempit rektangular vertikal rev 02moh rohmatulloh
 
Comparative Study and Analysis between Helical Coil and Straight Tube Heat Ex...
Comparative Study and Analysis between Helical Coil and Straight Tube Heat Ex...Comparative Study and Analysis between Helical Coil and Straight Tube Heat Ex...
Comparative Study and Analysis between Helical Coil and Straight Tube Heat Ex...IJERA Editor
 
Effect Of Cuo-Distilled Water Based Nanofluids On Heat Transfer Characteristi...
Effect Of Cuo-Distilled Water Based Nanofluids On Heat Transfer Characteristi...Effect Of Cuo-Distilled Water Based Nanofluids On Heat Transfer Characteristi...
Effect Of Cuo-Distilled Water Based Nanofluids On Heat Transfer Characteristi...IJERA Editor
 
A Review on Comparison between Shell And Tube Heat Exchanger And Helical Coil...
A Review on Comparison between Shell And Tube Heat Exchanger And Helical Coil...A Review on Comparison between Shell And Tube Heat Exchanger And Helical Coil...
A Review on Comparison between Shell And Tube Heat Exchanger And Helical Coil...ijiert bestjournal
 
IRJET- Computational Fluid Dymamic Analysis Natural Convection Flow through S...
IRJET- Computational Fluid Dymamic Analysis Natural Convection Flow through S...IRJET- Computational Fluid Dymamic Analysis Natural Convection Flow through S...
IRJET- Computational Fluid Dymamic Analysis Natural Convection Flow through S...IRJET Journal
 
Esign and thermal evaluation of shell and helical coil heat exchanger
Esign and thermal evaluation of shell and helical coil heat exchangerEsign and thermal evaluation of shell and helical coil heat exchanger
Esign and thermal evaluation of shell and helical coil heat exchangereSAT Journals
 
Experimental Investigation on Heat Transfer By Natural Convection Over A Cyli...
Experimental Investigation on Heat Transfer By Natural Convection Over A Cyli...Experimental Investigation on Heat Transfer By Natural Convection Over A Cyli...
Experimental Investigation on Heat Transfer By Natural Convection Over A Cyli...Ijripublishers Ijri
 
IRJET- Effect of Wavy Tube on Heat Transfer in a Concentric Tube Heat Exch...
IRJET- 	  Effect of Wavy Tube on Heat Transfer in a Concentric Tube Heat Exch...IRJET- 	  Effect of Wavy Tube on Heat Transfer in a Concentric Tube Heat Exch...
IRJET- Effect of Wavy Tube on Heat Transfer in a Concentric Tube Heat Exch...IRJET Journal
 
Effect of Wavy Tube on Heat Transfer in a Concentric Tube Heat Exchanger: A R...
Effect of Wavy Tube on Heat Transfer in a Concentric Tube Heat Exchanger: A R...Effect of Wavy Tube on Heat Transfer in a Concentric Tube Heat Exchanger: A R...
Effect of Wavy Tube on Heat Transfer in a Concentric Tube Heat Exchanger: A R...IRJET Journal
 
Experimental investigations of heat transfer mechanisms of a pulsating heat pipe
Experimental investigations of heat transfer mechanisms of a pulsating heat pipeExperimental investigations of heat transfer mechanisms of a pulsating heat pipe
Experimental investigations of heat transfer mechanisms of a pulsating heat pipeJohan Puentes
 
Parametric studies on heat transfer by natural convection in vertical channel...
Parametric studies on heat transfer by natural convection in vertical channel...Parametric studies on heat transfer by natural convection in vertical channel...
Parametric studies on heat transfer by natural convection in vertical channel...IRJET Journal
 
IRJET- Numerical Investigation on the Heat Transfer Characteristics of Alumin...
IRJET- Numerical Investigation on the Heat Transfer Characteristics of Alumin...IRJET- Numerical Investigation on the Heat Transfer Characteristics of Alumin...
IRJET- Numerical Investigation on the Heat Transfer Characteristics of Alumin...IRJET Journal
 
Mixed convection heat transferin inclined tubes with constant heat flux
Mixed convection heat transferin inclined tubes with constant heat fluxMixed convection heat transferin inclined tubes with constant heat flux
Mixed convection heat transferin inclined tubes with constant heat fluxOzyegin University
 
Mixed convection heat transfer in inclined tubes with constant heat flux, eur...
Mixed convection heat transfer in inclined tubes with constant heat flux, eur...Mixed convection heat transfer in inclined tubes with constant heat flux, eur...
Mixed convection heat transfer in inclined tubes with constant heat flux, eur...Ahmed Al-Sammarraie
 
NUMERICAL SIMULATION OF FORCED CONVECTION HEAT TRANSFER ENHANCEMENT BY POROUS...
NUMERICAL SIMULATION OF FORCED CONVECTION HEAT TRANSFER ENHANCEMENT BY POROUS...NUMERICAL SIMULATION OF FORCED CONVECTION HEAT TRANSFER ENHANCEMENT BY POROUS...
NUMERICAL SIMULATION OF FORCED CONVECTION HEAT TRANSFER ENHANCEMENT BY POROUS...IAEME Publication
 

Similar to Boiling heat transfer r22 (20)

Parametric Studies On Heat Transfer by Natural Convection from Inclined Cylin...
Parametric Studies On Heat Transfer by Natural Convection from Inclined Cylin...Parametric Studies On Heat Transfer by Natural Convection from Inclined Cylin...
Parametric Studies On Heat Transfer by Natural Convection from Inclined Cylin...
 
Research Inventy : International Journal of Engineering and Science
Research Inventy : International Journal of Engineering and ScienceResearch Inventy : International Journal of Engineering and Science
Research Inventy : International Journal of Engineering and Science
 
Analisis critical heat flux dalam celah sempit rektangular vertikal rev 02
Analisis critical heat flux dalam celah sempit rektangular vertikal rev 02Analisis critical heat flux dalam celah sempit rektangular vertikal rev 02
Analisis critical heat flux dalam celah sempit rektangular vertikal rev 02
 
Comparative Study and Analysis between Helical Coil and Straight Tube Heat Ex...
Comparative Study and Analysis between Helical Coil and Straight Tube Heat Ex...Comparative Study and Analysis between Helical Coil and Straight Tube Heat Ex...
Comparative Study and Analysis between Helical Coil and Straight Tube Heat Ex...
 
Effect Of Cuo-Distilled Water Based Nanofluids On Heat Transfer Characteristi...
Effect Of Cuo-Distilled Water Based Nanofluids On Heat Transfer Characteristi...Effect Of Cuo-Distilled Water Based Nanofluids On Heat Transfer Characteristi...
Effect Of Cuo-Distilled Water Based Nanofluids On Heat Transfer Characteristi...
 
A Review on Comparison between Shell And Tube Heat Exchanger And Helical Coil...
A Review on Comparison between Shell And Tube Heat Exchanger And Helical Coil...A Review on Comparison between Shell And Tube Heat Exchanger And Helical Coil...
A Review on Comparison between Shell And Tube Heat Exchanger And Helical Coil...
 
IRJET- Computational Fluid Dymamic Analysis Natural Convection Flow through S...
IRJET- Computational Fluid Dymamic Analysis Natural Convection Flow through S...IRJET- Computational Fluid Dymamic Analysis Natural Convection Flow through S...
IRJET- Computational Fluid Dymamic Analysis Natural Convection Flow through S...
 
Esign and thermal evaluation of shell and helical coil heat exchanger
Esign and thermal evaluation of shell and helical coil heat exchangerEsign and thermal evaluation of shell and helical coil heat exchanger
Esign and thermal evaluation of shell and helical coil heat exchanger
 
30120130405019 2
30120130405019 230120130405019 2
30120130405019 2
 
Team a01 9_lab_2
Team a01 9_lab_2Team a01 9_lab_2
Team a01 9_lab_2
 
Experimental Investigation on Heat Transfer By Natural Convection Over A Cyli...
Experimental Investigation on Heat Transfer By Natural Convection Over A Cyli...Experimental Investigation on Heat Transfer By Natural Convection Over A Cyli...
Experimental Investigation on Heat Transfer By Natural Convection Over A Cyli...
 
IRJET- Effect of Wavy Tube on Heat Transfer in a Concentric Tube Heat Exch...
IRJET- 	  Effect of Wavy Tube on Heat Transfer in a Concentric Tube Heat Exch...IRJET- 	  Effect of Wavy Tube on Heat Transfer in a Concentric Tube Heat Exch...
IRJET- Effect of Wavy Tube on Heat Transfer in a Concentric Tube Heat Exch...
 
Effect of Wavy Tube on Heat Transfer in a Concentric Tube Heat Exchanger: A R...
Effect of Wavy Tube on Heat Transfer in a Concentric Tube Heat Exchanger: A R...Effect of Wavy Tube on Heat Transfer in a Concentric Tube Heat Exchanger: A R...
Effect of Wavy Tube on Heat Transfer in a Concentric Tube Heat Exchanger: A R...
 
I05844759
I05844759I05844759
I05844759
 
Experimental investigations of heat transfer mechanisms of a pulsating heat pipe
Experimental investigations of heat transfer mechanisms of a pulsating heat pipeExperimental investigations of heat transfer mechanisms of a pulsating heat pipe
Experimental investigations of heat transfer mechanisms of a pulsating heat pipe
 
Parametric studies on heat transfer by natural convection in vertical channel...
Parametric studies on heat transfer by natural convection in vertical channel...Parametric studies on heat transfer by natural convection in vertical channel...
Parametric studies on heat transfer by natural convection in vertical channel...
 
IRJET- Numerical Investigation on the Heat Transfer Characteristics of Alumin...
IRJET- Numerical Investigation on the Heat Transfer Characteristics of Alumin...IRJET- Numerical Investigation on the Heat Transfer Characteristics of Alumin...
IRJET- Numerical Investigation on the Heat Transfer Characteristics of Alumin...
 
Mixed convection heat transferin inclined tubes with constant heat flux
Mixed convection heat transferin inclined tubes with constant heat fluxMixed convection heat transferin inclined tubes with constant heat flux
Mixed convection heat transferin inclined tubes with constant heat flux
 
Mixed convection heat transfer in inclined tubes with constant heat flux, eur...
Mixed convection heat transfer in inclined tubes with constant heat flux, eur...Mixed convection heat transfer in inclined tubes with constant heat flux, eur...
Mixed convection heat transfer in inclined tubes with constant heat flux, eur...
 
NUMERICAL SIMULATION OF FORCED CONVECTION HEAT TRANSFER ENHANCEMENT BY POROUS...
NUMERICAL SIMULATION OF FORCED CONVECTION HEAT TRANSFER ENHANCEMENT BY POROUS...NUMERICAL SIMULATION OF FORCED CONVECTION HEAT TRANSFER ENHANCEMENT BY POROUS...
NUMERICAL SIMULATION OF FORCED CONVECTION HEAT TRANSFER ENHANCEMENT BY POROUS...
 

More from Nandi Sudheer

More from Nandi Sudheer (15)

Mechanical measurements
Mechanical measurements  Mechanical measurements
Mechanical measurements
 
Fudamental
FudamentalFudamental
Fudamental
 
Mechanical measurements
Mechanical measurements Mechanical measurements
Mechanical measurements
 
Project Risk Management
Project Risk ManagementProject Risk Management
Project Risk Management
 
Project Management
Project ManagementProject Management
Project Management
 
PROJECT MANAGEMENT
PROJECT MANAGEMENT PROJECT MANAGEMENT
PROJECT MANAGEMENT
 
Project Management
Project ManagementProject Management
Project Management
 
Energy system |Multi phase
Energy system |Multi phaseEnergy system |Multi phase
Energy system |Multi phase
 
Dogmatic WORLD MAP
Dogmatic WORLD MAP Dogmatic WORLD MAP
Dogmatic WORLD MAP
 
20141203
2014120320141203
20141203
 
141112
141112141112
141112
 
Boiling heat transfer r22
Boiling heat  transfer  r22Boiling heat  transfer  r22
Boiling heat transfer r22
 
Material Study pcm
Material Study pcmMaterial Study pcm
Material Study pcm
 
PCM experimental Report
PCM experimental ReportPCM experimental Report
PCM experimental Report
 
June 2014 11
June  2014 11June  2014 11
June 2014 11
 

Recently uploaded

Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...Dr.Costas Sachpazis
 
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort serviceGurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort servicejennyeacort
 
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝soniya singh
 
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur EscortsCall Girls in Nagpur High Profile
 
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube ExchangerStudy on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube ExchangerAnamika Sarkar
 
Call Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile serviceCall Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile servicerehmti665
 
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escortsranjana rawat
 
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...Soham Mondal
 
IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024Mark Billinghurst
 
Artificial-Intelligence-in-Electronics (K).pptx
Artificial-Intelligence-in-Electronics (K).pptxArtificial-Intelligence-in-Electronics (K).pptx
Artificial-Intelligence-in-Electronics (K).pptxbritheesh05
 
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escortsranjana rawat
 
What are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptxWhat are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptxwendy cai
 
College Call Girls Nashik Nehal 7001305949 Independent Escort Service Nashik
College Call Girls Nashik Nehal 7001305949 Independent Escort Service NashikCollege Call Girls Nashik Nehal 7001305949 Independent Escort Service Nashik
College Call Girls Nashik Nehal 7001305949 Independent Escort Service NashikCall Girls in Nagpur High Profile
 
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICSAPPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICSKurinjimalarL3
 
Architect Hassan Khalil Portfolio for 2024
Architect Hassan Khalil Portfolio for 2024Architect Hassan Khalil Portfolio for 2024
Architect Hassan Khalil Portfolio for 2024hassan khalil
 
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130Suhani Kapoor
 
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdfCCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdfAsst.prof M.Gokilavani
 
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptxDecoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptxJoão Esperancinha
 

Recently uploaded (20)

Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
 
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort serviceGurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
 
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
 
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
 
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube ExchangerStudy on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
 
Call Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile serviceCall Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile service
 
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
 
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
 
IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024
 
Artificial-Intelligence-in-Electronics (K).pptx
Artificial-Intelligence-in-Electronics (K).pptxArtificial-Intelligence-in-Electronics (K).pptx
Artificial-Intelligence-in-Electronics (K).pptx
 
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
 
What are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptxWhat are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptx
 
College Call Girls Nashik Nehal 7001305949 Independent Escort Service Nashik
College Call Girls Nashik Nehal 7001305949 Independent Escort Service NashikCollege Call Girls Nashik Nehal 7001305949 Independent Escort Service Nashik
College Call Girls Nashik Nehal 7001305949 Independent Escort Service Nashik
 
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
 
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICSAPPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
APPLICATIONS-AC/DC DRIVES-OPERATING CHARACTERISTICS
 
Architect Hassan Khalil Portfolio for 2024
Architect Hassan Khalil Portfolio for 2024Architect Hassan Khalil Portfolio for 2024
Architect Hassan Khalil Portfolio for 2024
 
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
 
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdfCCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
 
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptxDecoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
 
Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptxExploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
 

Boiling heat transfer r22

  • 1. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. Boiling heat transfer of R-22, R-134a, and CO2 in horizontal smooth minichannels* Kwang-Il Choia, A.S. Pamitran a, Chun-Young Oh b, Jong-Taek Oh c,* A Graduate School, Chonnam National University, San 96-1, Dunduk-Dong, Yeosu, Chonnam 550-749, Republic of Korea B Refrigeration Research Institute, Chonnam National University, San 96-1, Dunduk-Dong, Yeosu, Chonnam 550-749, Republic of Korea C Department of Refrigeration and Air Conditioning Engineering, Chonnam National University, San 96-1, Dunduk-Dong, Yeosu, Chonnam 550-749, Republic of Korea Sudheer Nandi (Ph.D.),M.Tech,MBA. Sustainable Energy . S.korea
  • 2. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 2 • http://www.sciencedirect.com/science/article/pii/S0140700702000403# http://www.youtube.com/watch?v=s-YmfZNKnlU
  • 3. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 3 Qualitative classification flow regimes . MIT Department of Nuclear Science and Engineering
  • 4. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 4
  • 5. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 5 Heat transfer and flow regimes in a vertical heated channel. (Thermal non‐equilibrium effec ts have been neglected in sketching the bulk temperature)
  • 6. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. Abstract • This study examined convective boiling heat transfer in horizontal minichannels using R-22, R-134a, and CO2. • The local heat transfer coefficients were obtained for heat fluxes ranging from 10 to 40 kW 𝑚 −2 , mass fluxes ranging from 200 to 600 kg 𝑚−2 𝑠 −1 , a saturation temperature of 10 °C, and quality up to 1.0. • The test section was made of stainless steel tubes with inner diameters of 1.5 mm and 3.0 mm, and a length of 2000 mm. The section was heated uniformly by applying an electric current to the tubes directly. • Nucleate boiling heat transfer was the main contribution, particularly at the low quality region. • An increasing and decreasing heat transfer coefficient occurred at the lower vapor quality with increasing heat flux and mass flux. • The mean heat transfer coefficient ratio of R-22:R-134a:CO2 was approximately 1.0:0.8:2.0. Laminar flow was observed in the minichannels. • A new boiling heat transfer coefficient correlation based on the superposition model for refrigerants in minichannels was developed with a mean deviation of 11.21%. Keywords: Refrigerant; R-22; R-134a; R-744; Carbon dioxide; Experiment; Heat transfer; Boiling; Micro channel; smooth tube; Horizontal tube 6
  • 7. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 7
  • 8. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 8 Experimental apparatus The experimental test facility and test section.
  • 9. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. Experimental conditions 9
  • 10. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 10
  • 11. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 11 The effect of mass flux on heat transfer coefficient: (a)R-22, (b) R-134a, and (c) CO2
  • 12. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. The experimental data on Wojtan et al. [20] flow pattern map for R-22. 12
  • 13. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 13 The effect of heat flux on heat transfer coefficient: (a) R-22,(b) R-134a, and (c) CO2.
  • 14. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 14 The comparison of the heat transfer coefficient The effect of inner tube diameter on heat transfer coefficient for R-22.
  • 15. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 15 Development of a new correlation
  • 16. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 16
  • 17. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 17 Two-phase heat transfer multiplier as a function of ∅2 𝑓 Diagram of the experimental heat transfer coefficient, hexp., vs prediction heat transfer coefficient, hpred. Heat transfer coefficient comparisonNucleate boiling contribution
  • 18. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 18
  • 19. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. References [1] Z.Y. Bao, D.F. Fletcher, B.S. Haynes, Flow boiling heat transfer of freon R11 and HCFC123 in narrow passages, Int. J.Heat Mass Transfer 43 (2000) 3347e3358. [2] W. Zhang, T. Hibiki, K. Mishima, Correlation for flow boiling heat transfer in mini-channels, Int. J. Heat Mass Transfer 47 (2004) 5749e5763. [3] S.G. Kandlikar, M.E. Steinke, Predicting heat transfer during flow boiling in minichannels and microchannels, ASHRAE Trans. CH-03-13-1 (2003) 667e67 6. [4] T.N. Tran, M.W. Wambsganss, D.M. France, Small circularand rectangular-channel boiling with two refrigerants, Int. J. Multiphase Flow 22 (3) (1996) 48 5e498. [5] J. Pettersen, Flow vaporization of CO2 in microchannels tubes, Exp. Therm. Fluid Sci. 28 (2004) 111e121. [6] C.Y. Park, P.S. Hrnjak, Flow boiling heat transfer of CO2 at low temperatures in a horizontal smooth tube, ASME Trans. 127 (2005) 1305e1312. [7] Y. Zhao, M. Molki, M.M. Ohadi, S.V. Dessiatoun, Flow boiling of CO2 in microchannels (DA-00-2-1), ASHRAE Trans. (2000) 437e445. [8] R. Yun, Y. Kim, M.S. Kim, Convective boiling heat transfer characteristics of CO2 in microchannels, Int. J. Heat. Mass Transfer 48 (2005) 235e242. [9] S.H. Yoon, E.S. Cho, Y.W. Hwang, M.S. Kim, K. Min, Y. Kim, Characteristics of evaporative heat transfer and pressure drop of carbon dioxide and correlation dev elopment, Int. J. Refrigeration 27 (2004) 111e119. [10] A.S. Pamitran, K.I. Choi, J.T. Oh, H.K. Oh, Forced convective boiling heat transfer of R-410A in horizontal minichannels, Int. J. Refrigeration 30 (2007) 155e165. [11] J.P. Wattelet, J.C. Chato, A.L. Souza, B.R. Christoffersen, Evaporative characteristics of R-12, R-134a, and a mixture at low mass fluxes, ASHRAE Trans . 94-2-1 (1994) 603e615. [12] D.S. Jung, M. McLinden, R. Radermacher, D. Didion, A study of flow boiling heat transfer with refrigerant mixtures, Int. J. Heat Mass Transfer 32 (9) (1 989) 1751e1764. [13] M.M. Shah, Chart correlation for saturated boiling heat transfer: equations and further study, ASHRAE Trans. 2673 (1988) 185e196. [14] K.E. Gungor, H.S. Winterton, Simplified general correlation for saturated flow boiling and comparisons of correlations with data, Chem. Eng. Res. 65 (19 87) 148e156. 19
  • 20. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. [15] J.C. Chen, A correlation for boiling heat transfer to saturated fluids in convective flow, Ind. Eng. Chem. Process Des. Dev. 5 (1966) 322e329. [16] C.S. Kuo, C.C. Wang, In-tube evaporation of HCFC-22 in a 9.52 mm micro-fin/smooth tube, Int. J. Heat Mass Transfer 39 (1996) 2559e2569. [17] P.A. Kew, K. Cornwell, Correlations for the prediction of boiling heat transfer in small-diameter channels, Appl. Therm. Eng. 17 (8e10) (1997) 705e715. [18] G.M. Lazarek, S.H. Black, Evaporative heat transfer, pressure drop and critical heat flux in a small diameter vertical tube with R-113, Int. J. Heat Mass Transfe r 25 (1982) 945e960. [19] M.W. Wambsganss, D.M. France, J.A. Jendrzejczyk, T.N. Tran, Boiling heat transfer in a horizontal small-diameter tube, J. Heat Transfer 115 (1993) 963e975 [20] L. Wojtan, T. Ursenbacher, J.R. Thome, Investigation of flow boiling in horizontal tubes: part I e a new diabatic two-phase flow pattern map, Int. J. Heat Mass Transfer 48 (2005)2955e2969. [21] N. Kattan, J.R. Thome, D. Favrat, Flow boiling in horizontal tubes: part 1 e development of a diabatic two-phase flow pattern map, J. Heat Transfer 120 (1998) 140e147. [22] D. Steiner, Heat transfer to boiling saturated liquids, in:Verein Deutcher Ingenieure (Ed.), VDI-Wa¨rmeatlas. (VDI Heat Atlas), VDI-Gessellschaft Verfahrenst echnik und Chemieinge nieurwesen (GCV), Du¨sseldorf, Germany, 1993 (J.W. Fullarton, translator). [23] Y.Y. Yan, T.F. Lin, Evaporation heat transfer and pressure drop of refrigerant R-134a in a small pipe, Int. J. Heat Mass Transfer 41 (1998) 4183e4194. [24] M.G. Cooper, Heat flow rates in saturated nucleate pool boiling e a wide-ranging examination using reduced properties, Advances in Heat Transfer 16 (1984) 1 57e239 (Academic Press). [25] K. Stephan, M. Abdelsalam, Heat-transfer correlations for natural convection boiling, Int. J. Heat Mass Transfer 23 (1980) 73e87. [26] D. Chisholm, A theoretical basis for the LockharteMartinelli correlation for two-phase flow, Int. J. Heat Mass Transfer 10 (1967) 1767e1778. [27] D. Jung, Y. Kim, Y. Ko, K. Song, Nucleate boiling heat transfer coefficients of pure halogenated refrigerants, Int. J. Refrigeration 26 (2003) 240e248. 20
  • 21. Thermal Energy Conversion Control Lab. Chonbuk Nat’I Univ. 21 Thank you for listening