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Critical heat flux density in diphasic thermosyphons

Authors :
Ponomarev Konstantin O.
Orlova Evgeniya G.
Nurpeiis Аtlant E.
Source :
MATEC Web of Conferences, Vol 110, p 01064 (2017)
Publication Year :
2017
Publisher :
EDP Sciences, 2017.

Abstract

The paper presents an analysis of known dependencies for determining the critical heat flux density in diphasic thermosyphons. The critical heat flux density for the created experimental model of thermosyphon were calculated on the basis of the theoretical contributions of 1) the occurrence of a “flooding” regime in a thermosyphon characterized by a disturbance of the hydrodynamic stability of the phase interface and the entrainment of the liquid phase by the gas flow; 2) the mutual influence of gravitational forces and surface tension; 3) S.S. Kutateladze hydrodynamic theory of the heat transfer crisis during boiling. It is found that the existing theoretical contributions which can be used to calculate the critical heat flux density and subsequently determine the minimum filling ratio of a thermosyphon are conditionally applicable.

Details

Language :
English, French
ISSN :
2261236X
Volume :
110
Database :
Directory of Open Access Journals
Journal :
MATEC Web of Conferences
Publication Type :
Academic Journal
Accession number :
edsdoj.becb52e4da2a4f6fb9d50958057c8a0d
Document Type :
article
Full Text :
https://doi.org/10.1051/matecconf/201711001064