[1] LU Y W,KANDLIKAR S G.Nanoscale surface modification techniques for pool boiling enhancement——a critical review and future directions[J].Heat Transfer Engineering,2011,32(10):827-842.
[2] DONG L,QUAN X,CHENG P.An experimental investigation of enhanced pool boiling heat transfer from surfaces with micro/nano-structures[J].International Journal of Heat and Mass Transfer,2014,71(4):189-196.
[3] LIE Y M,KE J H,CHANG W R,et al.Saturated flow boiling heat transfer and associated bubble characteristics of FC-72 on a heated micro-pin-finned silicon chip[J].International Journal of Heat and Mass Transfer,2007,50(19-20):3862-3876.
[4] HUTTER C,KENNING D B R,SEFIANE K,et al.Experimental pool boiling investigations of FC-72 on silicon with artificial cavities and integrated temperature microsensors[J].Experimental Thermal and Fluid Science,2010,34(4):422-433.
[5] YU C K,LU D C,CHENG T C.Pool boiling heat transfer on artificial micro-cavity surfaces in dielectric fluid FC-72[J].Journal of Micromechanics and Microengineering,2006,16(10):2092-2099.
[6] VEMURI S,KIM K J.Pool boiling of saturated FC-72 on nano-porous surface[J].International Communications in Heat and Mass Transfer,2005,32(1-2):27-31.
[7] KIM S H,LEE G C,KANG J Y,et al.Boiling heat transfer and critical heat flux evaluation of the pool boiling on micro structured surface[J].International Journal of Heat and Mass Transfer,2015,91:1140-1147.
[8] KIM J,JUN S,LAKSNARAIN R,et al.Effect of surface roughness on pool boiling heat transfer at a heated surface having moderate wettability[J].International Journal of Heat and Mass Transfer,2016,101:992-1002.
[9] ROHSENOW W M.A method of correlating heat transfer data for surface boiling liquids[J].Transfer ASME Journal of Heat Transfer,1951,74:969-976.
[10] JUN S,KIM J,YOU S,et al.Effect of heater orientation on pool boiling heat transfer from sintered copper microporous coating in saturated water[J].International Journal of Heat and Mass Transfer,2016,103:277-284.
[11] JUN,S,WI H,GURUNG A,et al.Pool boiling heat transfer enhancement of water using brazed copper microporous coatings[J].Journal of Heat Transfer,2016,138(7):071505-071502-9.
[12] ?I?MAN Y,SADAGHIANI A K,KHEDIR K R,et al. Nucleate boiling heat transfer enhancement using nanostructured Al-alloy plates[C]//ASME 2016,International Conference on Micro/nanoscale Heat and MASS Transfer,2016.
[13] LABUNTZOV D A.Heat exchange at boiling of liquids[J].Thermal Energy Engineering,1959(12):19-26.
[14] CLARK H B,STRENGE P S,WESTWATER J W.Active sites for nucleate boiling[J].Chemical Engineering Progress Symposium,1959,56(29):103-110.
[15] SHOJI M,TAKAGI Y.Bubbling features from a single artificial cavity[J].International Journal of Heat and Mass Transfer,2001,44:2763-2776.
[16] HSU Y Y.On the size range of active nucleation cavities on a heating surface[J].Journal of Heat Transfer,1962,84(3):207.
[17] HONDA H,TAKAMASTU H,WEI J J.Enhanced boiling of FC-72 on silicon chips with micro-pin-fins and submicron:scale roughness[J].Transactions of the ASME Journal of Heat Transfer,2002,124(2):383-390.
[18] WANG Y Q,DONG C M,SHU S L.Enhanced pool boiling heat transfer on mono and multi-layer micro-nano bi-porous copper surfaces[C]//ASME 20165th International Conference on Micro/Nanoscale Heat and Mass Transfer,Biopolis,Singapore,2016.
[19] PARKER J L,EI-GENK M S.Enhanced saturation and subcooled boiling of FC-72 dielectric liquid[J].International Journal of Heat and Mass Transfer,2005,48(18):3736-3752.
[20] MAHALE J P,GARIMELLA S V.Nucleate boiling from smooth and rough surfaces-Part 1:fabrication and characterization of an optically transparent heater-sensor substrate with controlled surface roughness[J].Experimental Thermal and Fluid Science,2013,44(1):456-467.
[21] CHAN B,CHOI S,KIM S J.Critical heat flux of bi-porous sintered copper coatings in FC-72[J].International Journal of Heat and Mass Transfer,2013,65(7):655-661.
[22] 郭兆阳,徐鹏,王元华,等.烧结型多孔表面管外池沸腾传热特性[J].化工学报,2012,63(12):3798-3804. GUO Z Y,XU P,WANG Y H,et al.Pool boiling heat transfer on sintered porous coating tubes[J].CIESC Journal,2012,63(12):3798-3804.
[23] KIM J H,GURUNG A,AMAYA M,et al.Microporous coatings to maximize pool boiling heat transfer of saturated R-123 and water[J].Journal of Heat Transfer,2015,137(8):081501-7.
[24] GHEITAGHY A M,SAFFARI H,GHASIMI D,et al.Effect of electrolyte temperature on porous electrodeposited copper for pool boiling enhancement[J].Applied Thermal Engineering,2017,113:1097-1106.
[25] DAS S,SAHA B,BHAUMIK S.Experimental study of nucleate pool boiling heat transfer of water by surface functionalization with SiO2 nanostructure[J].Experimental Thermal and Fluid Science,2017,81:454-465.
[26] HUTTER C,SEFIANE K,KARAYIANNIS T G,et al.Nucleation site interaction between artificial cavities during nucleate pool boiling on silicon with integrated micro-heater and temperature micro-sensors[J].International Journal of Heat and Mass Transfer,2012,55(s 11-12):2769-2778.
[27] ZHANG L,SHOJI M.Nucleation site interaction in pool boiling on the artificial surface[J].International Journal of Heat and Mass Transfer,2003,46(3):513-522.
[28] NIMKAR N D,BHAVNANI S H,JAEGER R C.Effect of nucleation site spacing on the pool boiling characteristics of a structured surface[J].International Journal of Heat and Mass Transfer,2006,49(17-18):2829-2839.
[29] JIANG Y Y,OSADA H,INAGAKI M,et al.Wall thermal conductivity effects on nucleation site interaction during boiling:an experimental study[C]//International Heat Transfer Conference. 2010:135-160.
[30] TAKATA Y,HIDAKA S,CAO J M,et al.Effect of surface wettability on boiling and evaporation[J].Energy,2005,30(2-4):209-220.
[31] HAI T P,CANEY N,MARTY P,et al.Surface wettability control by nanocoating:the effects on pool boiling heat transfer and nucleation mechanism[J].International Journal of Heat and Mass Transfer,2009,52(23-24):5459-5471.
[32] JO S J,AN S,PARK H G,et al.Enhancement of critical heat flux and superheat through controlled wettability of cuprous-oxide fractal-like nanotextured surfaces in pool boiling[J].International Journal of Heat & Mass Transfer,2017,107:105-111.
[33] QI R,HU Y,WANG Y,et al.A new approach to enhance the heat and mass transfer of liquid desiccant dehumidification with a titanium dioxide superhydrophilic self-cleaning coating[J].Journal of Cleaner Production,2016,112:3555-3561.
[34] 陈宏霞,马福民,黄林滨.金属丝网超亲/疏水性强化气液相界面运动[J].化工学报,2016,67(6):2318-2324. CHEN H X,MA F M,HUANG L B.Super-wettability meshes enhance movement of gas-liquid interface[J]. CIESC Journal,2016,67(6):2318-2324.
[35] ZHANG B J,KIM K J.Nucleate pool boiling heat transfer augmentation on hydrophobic self-assembly mono-layered alumina nano-porous surfaces[J]. International Journal of Heat and Mass Transfer,2014,73(9):551-561.
[36] 徐鹏飞,李强,宣益民.超亲水多孔表面制备及其池沸腾换热研究[J].工程热物理学报,2014(8):1606-1609. XU P F,LI Q,XUAN Y M.Preparation and pool boiling heat transfer test of super-hydrophilic surface[J]. Journal of Engineering Thermophysics,2014(8):1606-1609.
[37] 郑晓欢,纪献兵,王野,等.超亲/疏水性表面池沸腾传热研究[J].化工进展,2016,35(12):3793-3798. ZHENG X H,JI X B,WANG Y,et al.Pool boiling heat transfer on superhydrophilic and superhydrophobic surfaces[J].Chemical Industry and Engineering Progress,2016,35(12):3793-3798.
[38] LU M C,HUANG C H,HUANG C T,et al.A modified hydrodynamic model for pool boiling CHF considering the effects of heater size and nucleation site density[J].International Journal of Thermal Sciences,2015,91(5):133-141.
[39] JO H J,AHN H S,KANG S H,et al.A study of nucleate boiling heat transfer on hydrophilic,hydrophobic and heterogeneous wetting surfaces[J].International Journal of Heat and Mass Transfer,2011,54(25-26):5643-5652.
[40] O'HANLEY H,COYLE C,BUONGIORNO J,et al.Separate effects of surface roughness,wettability,and porosity on the boiling critical heat flux[J].Applied Physics Letter,2013,103(2):024102-5.
[41] COYLE C,O'HARRY H,PHILLIPS B,et al.Effects of hydrophobic surface patterning on boiling heat transfer and critical heat flux of water at atmospheric pressure[C]//ASME 2013 Power Conference,2013:V002T11A005.
[42] BETZ A R,JENKINS J,KIM C J,et al.Boiling heat transfer on superhydrophilic,superhydrophobic,and superbiphilic surfaces[J]. International Journal of Heat and Mass Transfer,2013,57(2):733-741.
[43] ZUPAN?I? M,STEINBÜCHER M,GREGOR?I? P,et al. Enhanced pool-boiling heat transfer on laser-made hydrophobic/superhydrophilic polydimethylsiloxane-silica patterned surfaces[J]. Applied Thermal Engineering,2015,91:288-297.
[44] JO H J,PARK H S,KIM M H.Single bubble dynamics on hydrophobic-hydrophilic mixed surfaces[J].International Journal of Heat and Mass Transfer,2016,93:554-565.
[45] LEE J S,LEE J S.Critical heat flux enhancement of pool boiling with adaptive fraction control of patterned wettability[J].International Journal of Heat and Mass Transfer,2016,96:504-512.
[46] ZHANG B J,KIM K J.Nucleate pool boiling heat transfer augmentation on hydrophobic self-assembly mono-layered alumina nano-porous surfaces[J].International Journal of Heat and Mass Transfer,2014,73:551-561.
[47] TETREAULT-FRIEND M,AZIZIAN R,BUCCI M,et al.Critical heat flux maxima resulting from the controlled morphology of nanoporous hydrophilic surface layers[J].Applied Physics Letters,2016,108(24):243102.
[48] FORSTER H K,GREIF R.Heat transfer to a boiling liquid-mechanism and correlations[J].Journal of Heat Transfer,1959.
[49] HAN C Y,GRIFFITH P.The mechanism of heat transfer in nucleate pool boiling——Part Ⅰ:bubble initiaton,growth and departure[J].International Journal of Heat and Mass Transfer,1965,8(6):887-904.
[50] BANKOFF S G.COLAHAN W J.BARTZ D R.Summary of conference on bubble dynamics and boiling heat transfer held at the jet propulsion laboratory JPL memory[R].US:California Inst. of Tech.,Pasadena. Tet Propulsion Lab,1956.
[51] KURUL N,PODOWSKI M Z.Multidimensional effects in forced convection subcooled boiling[C]//Proceedings of the 9th International Heat Transfer Conference,Jeruselem,Israel,1990.
[52] 刁彦华,赵耀华,王秋良.R113池沸腾气泡行为的可视化及传热机理[J].化工学报,2005,56(2):227-234. DIAO Y H,ZHAO Y H,WANG Q L.Bubble dynamics and heat transfer mechanism of pool boiling of R113[J].CIESC Journal,2005,56(2):227-234.
[53] 刁彦华,赵耀华,王秋良.制冷工质R11池沸腾换热气泡行为的可视化研究[J].自然科学进展,2006,16(4):449-456. DIAO Y H,ZHAO Y H,WANG Q L.Bubble dynamics and heat transfer mechanism of pool boiling of R11[J].Progress in Natural Science,2006,16(4):449-456.
[54] XUE M,PENG N,LI C,et al.Enhanced superhydrophilicity and thermal stability of ITO surface with patterned ceria coatings[J]. Applied Surface Science,2015,329:11-16.
[55] GERARDI C,BUONGIORNO J,HU L,et al.Study of bubble growth in water pool boiling through synchronized,infrared thermometry and high-speed video[J].International Journal of Heat and Mass Transfer,2010,53(19):4185-4192.
[56] THIAGARAJAN S J,YANG R,KING C,et al.Bubble dynamics and nucleate pool boiling heat transfer on microporous copper surfaces[J].International Journal of Heat and Mass Transfer,2015,89:1297-1315.
[57] GONG S,CHENG P.Lattice Boltzmann simulations for surface wettability effects in saturated pool boiling heat transfer[J]. International Journal of Heat and Mass Transfer,2015,85:635-646.
[58] KANDLIKAR S G.A theoretical model to predict pool boiling CHF incorporating effects of contact angle and orientation[J].Journal of Heat Transfer,2001,123(6):1071-1079.
[59] ZUBER N.Hydrodynamic aspects of boiling heat transfer[M].Los Angeles,CA:California University,1959:156.
[60] CHU K H,ENRIGHT R,WANG E N.Microstructured surfaces for enhanced pool boiling heat transfer[J].Applied Physics Letter,2012,100(24):214603-214603-4.
[61] AHN H S,CHAN L,KIM H,et al.Pool boiling CHF enhancement by micro/nanoscale modification of zircaloy-4 surface[J].Nuclear Engineering and Design,2010,240(10):3350-3360.
[62] AHN H S,CHAN L,KIM J,et al.The effect of capillary wicking action of micro/nano structures on pool boiling critical heat flux[J].International Journal of Heat and Mass Transfer,2012,55(s 1/2/3):89-92.
[63] QUAN X,DONG L,CHENG P.A CHF model for saturated pool boiling on a heated surface with micro/nano-scale structures[J]. International Journal of Heat and Mass Transfer,2014,76(6):452-458.
[64] 王伟,全晓军,郑平.池沸腾临界热流密度及临界波长的实验研究[J].热科学与技术,2014,13(2):0135-0136. WANG W,QUAN X J,CHENG P.Experimental study on critical heat flux and critical wavelength of pool boiling[J].Journal of Thermal Science and Technology,2014,13(2):0135-0136.
[65] WEI J J,HONDA H.Effects of fin geometry on boiling heat transfer from silicon chips with micro-pin-fins immersed in FC-72[J]. International Journal of Heat and Mass Transfer,2003,46(21):4059-4070.
[66] LU M C,CHEN R,SRINIVASAN V,et al.Critical heat flux of pool boiling on Si nanowire array-coated surfaces[J].International Journal of Heat and Mass Transfer,2011,54(25):5359-5367.
[67] SANG M K,AMAYA M,KUMAR R,et al.Effects of pressure,orientation,and heater size on pool boiling of water with nanocoated heaters[J].International Journal of Heat and Mass Transfer,2010,53(23-24):5199-5208. |