Hydrodynamics and Heat Transfer during Boiling in a Rotating Gas–Liquid Layer
- Authors: Voinov N.A.1, Zhukova O.P.1, Konovalov N.M.2
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Affiliations:
- Reshetnev Siberian State Aerospace University
- Krasnoyarsk Branch of JSC Transsibneft-Zapadnaya Sibir’
- Issue: Vol 52, No 6 (2018)
- Pages: 987-995
- Section: Article
- URL: https://journals.rcsi.science/0040-5795/article/view/172727
- DOI: https://doi.org/10.1134/S0040579518060143
- ID: 172727
Cite item
Abstract
Research results regarding hydrodynamics and heat transfer during boiling in a rotating gas–liquid layer are presented. The dependencies for defining the gas content, angular velocity, and height of the liquid layer retained on the heat transfer surface at the expense of the force of inertia of the rotating gas flow are obtained. It is shown that the heat transfer coefficient increases with growth of the angular velocity of the layer and the decrement of its average temperature. The increment of the heat transfer coefficient during boiling in comparison to boiling in the chamber volume was achieved up to three times. Construction of the vortex evaporator (condenser) was elaborated, and the heat transfer coefficient in it constituted 15 000–30 000 W/(m2 K).
Keywords
About the authors
N. A. Voinov
Reshetnev Siberian State Aerospace University
Author for correspondence.
Email: Voynov@siberianet.ru
Russian Federation, Krasnoyarsk, 660037
O. P. Zhukova
Reshetnev Siberian State Aerospace University
Email: Voynov@siberianet.ru
Russian Federation, Krasnoyarsk, 660037
N. M. Konovalov
Krasnoyarsk Branch of JSC Transsibneft-Zapadnaya Sibir’
Email: Voynov@siberianet.ru
Russian Federation, Krasnoyarsk, 660043
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