[1] |
JI W T, NUMATA M, HE Y L, et al. Nucleate pool boiling and filmwise condensation heat transfer of R134a on the same horizontal tubes[J]. International Journal of Heat and Mass Transfer, 2015, 86:744-754.
|
[2] |
JI W T, ZHAO C Y, HE Y L, et al. Experimental validation of Cooper correlation at higher heat flux[J]. International Journal of Heat and Mass Transfer, 2015, 90:1241-1243.
|
[3] |
ZHAO C Y, JI W T, JIN P H, et al. Heat transfer correlation of the falling film evaporation on a single horizontal smooth tube[J]. Applied Thermal Engineering, 2016, 103:177-186.
|
[4] |
WEBB R L. Odyssey of the enhanced boiling surface[J]. Journal of Heat Transfer, 2004, 126(6):1051-1059.
|
[5] |
WEBB R L, KIM N H. Principle of Enhanced Heat Transfer[M]. Boca Raton:Taylor & Francis, 2005.
|
[6] |
VAN ROOYEN E, THOME J. Pool boiling data and prediction method for enhanced boiling tubes with R-134a, R-236fa and R-1234ze (E)[J]. International Journal of Refrigeration, 2013, 36(2):447-455.
|
[7] |
JI W T, ZHANG D C, HE Y L, et al. Prediction of fully developed turbulent heat transfer of internal helically ribbed tubes-an extension of Gnielinski equation[J]. International Journal of Heat and Mass Transfer, 2011, 55(4):1375-1384.
|
[8] |
MANGLIK R M. Current progress and new developments in enhanced heat and mass transfer[J]. Journal of Enhanced Heat Transfer, 2013, 20(1):1-15.
|
[9] |
JI W T, JACOBI A M, HE Y L, et al. Summary and evaluation on single-phase heat transfer enhancement techniques of liquid laminar and turbulent pipe flow[J]. International Journal of Heat and Mass Transfer, 2015, 88:735-754.
|
[10] |
冀文涛, 张定才, 冯楠, 等. 水平管外含油及纯R134a池沸腾换热特性比较[J]. 工程热物理学报, 2008, 29(7):1195-1198.JI W T, ZHANG D C, FENG N, et al. Pool boiling heat transfer comparison of pure R134a and R134a with oil additive outside horizontal tubes[J]. Journal of Engineering Thermophysics, 2008, 29(7):1195-1198.
|
[11] |
冀文涛, 冯楠, 张定才, 等. 润滑油对水平管外R134a池沸腾换热的影响[J]. 工程热物理学报, 2009, 30(5):821-823.JI W T, FENG N, ZHANG D C, et al. Influence of oil additive on pool boiling heat transfer of R134a outside horizontal tubes[J]. Journal of Engineering Thermophysics, 2009, 30(5):821-823.
|
[12] |
冀文涛, 屈治国, 郭剑飞, 等. 水平管外开孔铜泡沫R134a池沸腾换热实验研究[J]. 工程热物理学报, 2010, 31(7):1185-1188.JI W T, QU Z G, GUO J F, et al. Pool boiling heat transfer of R134a outside horizontal open-cell copper foam tubes[J]. Journal of Engineering Thermophysics, 2010, 31(7):1185-1188.
|
[13] |
郭剑飞, 李增耀, 屈治国, 等. 水平金属泡沫管外R134a凝结传热实验研究[J]. 工程热物理学报, 2011, 32(5):839-842.GUO J F, LI Z Y, QU Z G, et al. An experimental study of condensation heat transfer characteristics outside the horizontal metal foam tubes[J]. Journal of Engineering Thermophysics, 2011, 32(5):839-842.
|
[14] |
WANG C C, HAFNER A, KUO C S, et al. Influence of lubricant on the nucleate boiling heat transfer performance of refrigerant-a review[J]. Heat Transfer Engineering, 2014, 35(6/7/8):651-663.
|
[15] |
LEE Y, KANG D G, KIM J H, et al. Nucleate boiling heat transfer coefficients of HFO1234yf on various enhanced surfaces[J]. International Journal of Refrigeration, 2014, 38:198-205.
|
[16] |
JI W T, ZHAO C Y, ZHANG D C, et al. Effect of vapor flow on the falling film evaporation of R134a outside a horizontal tube bundle[J]. International Journal of Heat and Mass Transfer, 2016, 92:1171-1181.
|
[17] |
JI W T, ZHANG D C, FENG N, et al. Nucleate pool boiling heat transfer of R134a and R134a-PVE lubricant mixtures on smooth and five enhanced tubes[J]. Journal of Heat Transfer, 2010, 132(11):11502.
|
[18] |
JI W T, QU Z G, LI Z Y, et al. Pool boiling heat transfer of R134a on single horizontal tube surfaces sintered with open-celled copper foam[J]. International Journal of Thermal Sciences, 2011, 50(11):2248-2255.
|
[19] |
GNIELINSKI V. New equations for heat and mass transfer in turbulent pipe and channel flows[J]. Int. Chem. Eng., 1976, 16:359-368.
|
[20] |
COOPER M G. Saturation nucleate pool boiling-a simple correlation[J]. International Chemical Engineering Sym-posium Series, 1984, 86:785-792.
|