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TVT, 2008, Volume 46, Issue 1, Pages 100–109 (Mi tvt1006)  

This article is cited in 2 scientific papers (total in 2 papers)

Heat and Mass Transfer and Physical Gasdynamics

Self-oscillations of nonisothermal flow of viscous liquid in a channel

A. V. Melkikh, V. D. Seleznev

Ural State Technical University, Ekaterinburg

Abstract: The process of emergence of self-oscillations of a flow of viscous liquid in a channel under conditions of heat transfer to the cold channel wall is considered. The parameters of liquid and heat transfer, at which self-oscillations may exist, are obtained, as well as the dependences of the period and amplitude of self-oscillations on the parameters of the system. The behavior of the system is investigated in the vicinity of the critical point determined in the curve of the dependence of liquid flow rate on pressure difference. A generalizing scheme of operation is given for a number of self-oscillatory systems, and it is demonstrated that their behavior in the vicinity of the critical point is described by the same equations.

Full text: PDF file (715 kB)

English version:
High Temperature, 2008, 46:1, 91–99

Bibliographic databases:

UDC: 532.54;536.24
PACS: 44.15+a; 47.20. Ky; 47.27.ed
Received: 17.03.2005

Citation: A. V. Melkikh, V. D. Seleznev, “Self-oscillations of nonisothermal flow of viscous liquid in a channel”, TVT, 46:1 (2008), 100–109; High Temperature, 46:1 (2008), 91–99

Citation in format AMSBIB
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\by A.~V.~Melkikh, V.~D.~Seleznev
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\jour TVT
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\vol 46
\issue 1
\pages 100--109
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\elib{http://elibrary.ru/item.asp?id=9594545}
\transl
\jour High Temperature
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\vol 46
\issue 1
\pages 91--99
\crossref{https://doi.org/10.1134/s10740-008-1013-2}
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    Citing articles on Google Scholar: Russian citations, English citations
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    1. B. I. Basok, B. V. Davydenko, V. V. Gotsulenko, “Avtokolebaniya v trube Riike pri raspolozhenii elektronagrevatelya neposredstvenno na ee vkhode”, Sib. zhurn. industr. matem., 16:2 (2013), 50–61  mathnet  mathscinet
    2. B. I. Basok, V. V. Gotsulenko, “Regularities of thermoacoustic oscillations in Lehmann's system with a reverse movement of the coolant”, Math. Models Comput. Simul., 9:6 (2017), 669–678  mathnet  crossref  elib
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