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Heat Transfer Research
Импакт фактор: 0.404 5-летний Импакт фактор: 0.8 SJR: 0.264 SNIP: 0.504 CiteScore™: 0.88

ISSN Печать: 1064-2285
ISSN Онлайн: 2162-6561

Выпуски:
Том 50, 2019 Том 49, 2018 Том 48, 2017 Том 47, 2016 Том 46, 2015 Том 45, 2014 Том 44, 2013 Том 43, 2012 Том 42, 2011 Том 41, 2010 Том 40, 2009 Том 39, 2008 Том 38, 2007 Том 37, 2006 Том 36, 2005 Том 35, 2004 Том 34, 2003 Том 33, 2002 Том 32, 2001 Том 31, 2000 Том 30, 1999 Том 29, 1998 Том 28, 1997

Heat Transfer Research

DOI: 10.1615/HeatTransRes.v34.i5-6.130
11 pages

Growth of a Vapor Film on the Heater Immersed into a Highly Conducting Liquid

A. A. Gorbunov
Institute of the Problems of Mechanics, Russian Academy of Sciences, Moscow
I. M. Dergunov
Moscow Power Engineering Institute, Russian Academy of Sciences, Moscow, Russia
Alexei P. Kryukov
Moscow Power Engineering Institute, Moscow, Krasnokazarmennaya 14, 111250, Russia

Краткое описание

Results of the numerical investigation of vapor film evolution in sodium film boiling under microgravity conditions are presented. The gas molecular-kinetic theory in combination with continuum mechanics are used for system description. Two different heat transfer models are considered. The peculiarities of vapor cavity evolution connected with interphase resistance and liquid thermal resistance are obtained. The influence of temperature and pressure in the vessel on the vapor film growth–collapse is investigated.


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