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Original Paper

A Correlation in Displacement Velocity of Liquid Film Boundary formed on a Heated Vertical Surface in Emergency Cooling

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Pages 418-425 | Received 30 Mar 1970, Published online: 15 Mar 2012

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Read on this site (3)

Shinya Mizokami, Hideya Kitamura, Yoshiro Kudo, Seiichi Komura, Yoshifumi Nagata & Shinichi Morooka. (2005) Application of the Post-Boiling-Transition Standard to Licensing Analysis. Nuclear Technology 152:1, pages 105-117.
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Rodney R. Gay. (1977) Reactor Hydrodynamics during the Reflood Phase of a Loss-of-Coolant Accident. Nuclear Technology 36:2, pages 229-237.
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Keisuke YOSHIOKA & Shu HASEGAWA. (1975) An Analytical Model for Displacement Velocity of Liquid Film on a Hot Vertical Surface. Journal of Nuclear Science and Technology 12:12, pages 735-741.
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Articles from other publishers (5)

Vivek Gupta & Pradyumna Ghosh. (2020) Visualization of Quench Front Propagation on Heated Rod Through Single Jet Impingement. Journal of Heat Transfer 142:9.
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S.A. Nada, M. Shoukri, A.F. El-Dib & A.S. Huzayyin. (2014) Rewetting of hot vertical tubes by a falling liquid film with different directions of venting the generated steam. International Journal of Thermal Sciences 85, pages 62-72.
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I. P. Starodubtseva, A. N. Pavlenko, O. A. Volodin & A. S. Surtaev. (2012) The features of rewetting dynamics of the overheated surface by a falling film of cryogenic liquid. Thermophysics and Aeromechanics 19:2, pages 307-316.
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B. G. Ganchev & A. E. Bokov. (1981) Wetting of a hot vertical surface by a flowing liquid film. Journal of engineering physics 41:5, pages 1163-1168.
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T.S. Thompson. (1974) On the process of rewetting a hot surface by a falling liquid film. Nuclear Engineering and Design 31:2, pages 234-245.
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