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TVT, 2014, Volume 52, Issue 5, Pages 710–717 (Mi tvt1245)  

This article is cited in 8 scientific papers (total in 8 papers)

Heat and Mass Transfer and Physical Gasdynamics

Two-phase flow in a horizontal rectangular microchannel

E. A. Chinnova, F. V. Ron'shinb, V. V. Guzanovab, D. M. Markovichba, O. A. Kabovca

a S.S. Kutateladze Institute of Thermophysics, Siberian Division of the Russian Academy of Sciences
b Novosibirsk State University
c Tomsk State University

Abstract: Two-phase flow in a rectangular short horizontal channel $200$ $\mu$m high was studied experimentally. The use of the fluorescent method made it possible to reveal flow of liquid in the channel and to determine its characteristics quantitatively. The existence of the regime of separate (stratified) flow was established. Based on analysis of previous investigations and newly obtained data, it is shown that a change in the height of the horizontal channel has a substantial effect on the boundaries between the regimes. The region of the churn flow regime increases with decreasing thickness of the channel.

DOI: https://doi.org/10.7868/S0040364414040073

Full text: PDF file (1078 kB)
References: PDF file   HTML file

English version:
High Temperature, 2014, 52:5, 681–687

Bibliographic databases:

UDC: 532.529:536.24
Received: 21.08.2013

Citation: E. A. Chinnov, F. V. Ron'shin, V. V. Guzanov, D. M. Markovich, O. A. Kabov, “Two-phase flow in a horizontal rectangular microchannel”, TVT, 52:5 (2014), 710–717; High Temperature, 52:5 (2014), 681–687

Citation in format AMSBIB
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    Citing articles on Google Scholar: Russian citations, English citations
    Related articles on Google Scholar: Russian articles, English articles

    This publication is cited in the following articles:
    1. Chinnov E.A. Ron'shin F.V. Kabov O.A., “Features of Two-Phase Flow in a Rectangular Microchannel With the Height of 300 Mu M”, Thermophys. Aeromechanics, 21:6 (2014), 759–762  crossref  isi  elib
    2. Chinnov E.A. Ron'shin F.V. Kabov O.A., “Study of Gas-Water Flow in Horizontal Rectangular Channels”, Thermophys. Aeromechanics, 22:5 (2015), 621–629  crossref  isi
    3. Chinnov E.A. Ron'shin F.V. Kabov O.A., “Two-Phase Flow in Short Horizontal Rectangular Microchannels With a Height of 300 Mu M”, Tech. Phys. Lett., 41:9 (2015), 817–819  crossref  isi  elib
    4. Chinnov E.A. Ron'shin F.V. Kabov O.A., “Regimes of Two-Phase Flow in Micro- and Minichannels (Review)”, Thermophys. Aeromechanics, 22:3 (2015), 265–284  crossref  isi  elib
    5. E. A. Chinnov, F. V. Ron'shin, O. A. Kabov, “Two-phase flow patterns in short horizontal rectangular microchannels”, Int. J. Multiph. Flow, 80 (2016), 57–68  crossref  mathscinet  isi
    6. V. V. Cheverda, “The thermocapillary deformations in the locally heated shear-driven liquid film flowing in minichannel”, Joint 12th International Conference: Two-Phase Systems For Space and Ground Applications and 2nd International School of Young Scientists Interfacial Phenomena and Heat Transfer, Journal of Physics Conference Series, 925, eds. O. Kabov, Y. Lyulin, D. Zaitsev, IOP Publishing Ltd, 2017, UNSP 012028  crossref  isi  scopus
    7. O. V. Svetlichnaya, V. V. Cheverda, E. O. Kirichenko, “Varieties of the gas driven water rivulet flow regimes in the minichannels”, Joint 12th International Conference: Two-Phase Systems For Space and Ground Applications and 2nd International School of Young Scientists Interfacial Phenomena and Heat Transfer, Journal of Physics Conference Series, 925, eds. O. Kabov, Y. Lyulin, D. Zaitsev, IOP Publishing Ltd, 2017, UNSP 012010  crossref  isi  scopus
    8. Q. Lou, M. Yang, H. Xu, “Numerical investigations of gas-liquid two-phase flows in microchannels”, Proc. Inst. Mech. Eng. Part C-J. Eng. Mech. Eng. Sci., 232:3, SI (2018), 466–476  crossref  isi  scopus
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