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Analytic determination of the number of nucleation sites in nucleate boiling of liquids on real surfacesKOPP, I. Z.Heat transfer. Soviet research. 1989, Vol 21, Num 6, pp 735-741, issn 0440-5749, 7 p.Article

Flow boiling―the apparently nucleate regimeCOOPER, M. G.International journal of heat and mass transfer. 1989, Vol 32, Num 3, pp 459-464, issn 0017-9310Article

On nucleation site interactionJUDD, R. L.Journal of heat transfer. 1988, Vol 110, Num 2, pp 475-478, issn 0022-1481Article

Wärmeübergang beim Blasensieden : Universelle Gleichung auf der Basis der erweiterten Korrespondenzprinzips = Heat transfer in bubble boiling: universal equation based on the correspondence principleLEINER, W.Chemieingenieurtechnik. 1992, Vol 64, Num 1, pp 84-85, issn 0009-286XArticle

Monte Carlo departure from nucleate boiling ratio limit development using few-channel thermal-hydraulics code modelsANDERSON, R. C; BASEHORE, K. L.Nuclear technology. 1987, Vol 77, Num 2, pp 227-230, issn 0029-5450Article

A new model describing the superheated state of the wall layer during nucleate boilingSCHROEDER-RICHTER, D; BARTSCH, G.International communications in heat and mass transfer. 1990, Vol 17, Num 1, pp 1-8, issn 0735-1933Article

Nucleate boiling of oxygen under reduced gravityKIRICHENKO, YU. A; GLADCHENKO, G. M; RUSANOV, K. V et al.Heat transfer. Soviet research. 1985, Vol 17, Num 2, pp 90-95, issn 0440-5749Article

Things we don't know about boiling heat transfer: 1988LIENHARD, J. H.International communications in heat and mass transfer. 1988, Vol 15, Num 4, pp 401-428, issn 0735-1933Article

To the nucleate boiling theoryKOLEV, Nikolay Ivanov.Nuclear engineering and design. 2009, Vol 239, Num 1, pp 187-192, issn 0029-5493, 6 p.Article

A mathematical model of the pool boiling nucleation site density in terms of the surface characteristicsYANG, S. R; KIM, R. H.International journal of heat and mass transfer. 1988, Vol 31, Num 6, pp 1127-1135, issn 0017-9310Article

Numerical simulation of the detachment of bubbles from a rough surface at microscale levelMARKUS, Attila; HAZI, Gabor.Nuclear engineering and design. 2012, Vol 248, pp 263-269, issn 0029-5493, 7 p.Article

Photographic Study on Bubble Motion in Subcooled Pool BoilingOKAWA, Tomio; HARADA, Takahiro; KOTSUSA, Yuta et al.Journal of engineering for gas turbines and power. 2010, Vol 132, Num 10, issn 0742-4795, 102922.1-102922.6Article

Analytical determination of the onset of nucleate boiling of subcooled water in pipesZYATNINA, O. A; IVASHKEVICH, A. A; MITROFANOVA, T. V et al.Heat transfer. Soviet research. 1989, Vol 21, Num 6, pp 742-752, issn 0440-5749, 11 p.Article

Comparison of a mechanistic model for nucleate boiling with experimental spatio-temporal dataGOLOBIC, I; PAVLOVIC, E; VON HARDENBERG, J et al.Chemical engineering research & design. 2004, Vol 82, Num 4, pp 435-444, issn 0263-8762, 10 p.Conference Paper

Quasi-homogeneous boiling nucleation on a small spherical heater in microgravityHO SUNG LEE; MERTE, Herman JR; PICKER, Gerold et al.International journal of heat and mass transfer. 2003, Vol 46, Num 26, pp 5087-5097, issn 0017-9310, 11 p.Article

Bubble-tracking modeling of subcooled nucleate boiling in a vertical annulusKLJENAK, Ivo; GOON CHERL PARK; MAVKO, Borut et al.International heat transfer conference. 2002, pp 767-772, isbn 2-84299-308-X, 6 p.Conference Paper

Beginn des Siedens an porösen Oberflachen = The incipience of nucleate pool boiling on porous surfacesCIESLINSKI, Janusz T.Heat exchange and renewable energy sources. International symposium. 1996, pp 85-92, isbn 83-86359-83-8, 8 p.Conference Paper

The departure size of pool-boiling bubbles from artificial cavities at moderate and high pressuresSLUYTER, W. M; SLOOTEN, P. C; COPRAIJ, C. A et al.International journal of multiphase flow. 1991, Vol 17, Num 1, pp 153-158, issn 0301-9322, 6 p.Article

Heat transfer in nucleate boiling within a vertical narrow spaceFUJITA, Y; OHTA, H; UCHIDA, S et al.JSME International journal. Series 2, Fluids engineering, heat transfer, power, combustion, thermophysical properties. 1988, Vol 31, Num 3, pp 513-519Conference Paper

Activated flashing of liquids at high superheatsPAVLOV, P. A; SINITSYN, E. N; SKRIPOV, V. P et al.Heat transfer. Soviet research. 1987, Vol 19, Num 3, pp 100-108, issn 0440-5749Article

A cavity activation and bubble growth model of the Leidenfrost pointBERNARDIN, John D; MUDAWAR, Issam.Journal of heat transfer. 2002, Vol 124, Num 5, pp 864-874, issn 0022-1481Article

Scaling of nucleate boiling rates from water to liquid helium. I: Wetting conditions on oxidized copper surfacesRAVIKUMAR, K. V; DHIR, V; FREDERKING, T. H. K et al.Cryogenics (Guildford). 1992, Vol 32, Num 5, pp 430-432, issn 0011-2275Conference Paper

The film boiling crisis and transition boilingKALININ, E. K.Heat transfer. Soviet research. 1991, Vol 23, Num 1, pp 93-106, issn 0440-5749Article

Pool boiling heat transfer in an upward horizontal rough heating surfaceTORIKAI, K; SUZUKI, K.Heat transfer. Japanese research. 1988, Vol 17, Num 1, pp 88-96, issn 0096-0802Article

Angle de contact variable lors de la croissance d'une bulle de vapeur quasi statique sur la surface horizontale d'un liquide en ébullitionCHIGAREV, N. B; CHIGAREVA, T. S.Inženerno-fizičeskij žurnal. 1986, Vol 50, Num 4, pp 566-570, issn 0021-0285Article

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