Study of Inertia and Compressibility Effects on the Density Wave Oscillations of Two-Phase Boiling Flows in Parallel Channels

In this research, a theoretical model is presented to investigate the density wave oscillations (DWOs), in two horizontal parallel channels with lumped parameter model based on two phase homogeneous hypothesis. The parallel channel is composed of the entrance section, heating section and outlet sect...

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Main Authors: Y. Bakhshan, S. Kazemi, S. Niazi, P. Adibi
Format: Article
Language:English
Published: Isfahan University of Technology 2017-01-01
Series:Journal of Applied Fluid Mechanics
Subjects:
Online Access:http://jafmonline.net/JournalArchive/download?file_ID=43813&issue_ID=245
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spelling doaj-809922dbbf4e496dbbf872dbad5bce9c2020-11-25T02:35:10ZengIsfahan University of Technology Journal of Applied Fluid Mechanics1735-35722017-01-0110615711581.Study of Inertia and Compressibility Effects on the Density Wave Oscillations of Two-Phase Boiling Flows in Parallel ChannelsY. Bakhshan0S. Kazemi1S. Niazi2P. Adibi3Department of Mechanical Engineering, Faculty of Engineering, Hormozgan UniversityDepartment of Mechanical Engineering, Faculty of Engineering, Hormozgan UniversityDepartment of Mechanical Engineering, Faculty of Engineering, Hormozgan UniversityDepartment of Mechanical Engineering, Faculty of Engineering, Hormozgan UniversityIn this research, a theoretical model is presented to investigate the density wave oscillations (DWOs), in two horizontal parallel channels with lumped parameter model based on two phase homogeneous hypothesis. The parallel channel is composed of the entrance section, heating section and outlet section and the model consists of the boiling channel model, pressure drop model, parallel channel model, constructive model and inertia and compressibility effects, while subcooled boiling effect is neglected and the governing equations are solved by Gear method. The model is validated with experimental data of a single channel flow instability experiment. Then the flow instability in twin channel system is studied under different conditions. This model can analyze the effects of external parameters, such as fluid inertia and compressible gases on the stability margins of density wave oscillations. The results show that, the fluid inertia and compressible gases can significantly change the stability margins of two parallel channels; in fact, the stability behavior of two parallel channel system improves with increasing the inlet inertia and outlet compressibility but, increasing the outlet inertia and inlet compressibility have negative effects the system stability.http://jafmonline.net/JournalArchive/download?file_ID=43813&issue_ID=245Density wave oscillations; Parallel channels; Fluid inertia effects; Compressibility effects.
collection DOAJ
language English
format Article
sources DOAJ
author Y. Bakhshan
S. Kazemi
S. Niazi
P. Adibi
spellingShingle Y. Bakhshan
S. Kazemi
S. Niazi
P. Adibi
Study of Inertia and Compressibility Effects on the Density Wave Oscillations of Two-Phase Boiling Flows in Parallel Channels
Journal of Applied Fluid Mechanics
Density wave oscillations; Parallel channels; Fluid inertia effects; Compressibility effects.
author_facet Y. Bakhshan
S. Kazemi
S. Niazi
P. Adibi
author_sort Y. Bakhshan
title Study of Inertia and Compressibility Effects on the Density Wave Oscillations of Two-Phase Boiling Flows in Parallel Channels
title_short Study of Inertia and Compressibility Effects on the Density Wave Oscillations of Two-Phase Boiling Flows in Parallel Channels
title_full Study of Inertia and Compressibility Effects on the Density Wave Oscillations of Two-Phase Boiling Flows in Parallel Channels
title_fullStr Study of Inertia and Compressibility Effects on the Density Wave Oscillations of Two-Phase Boiling Flows in Parallel Channels
title_full_unstemmed Study of Inertia and Compressibility Effects on the Density Wave Oscillations of Two-Phase Boiling Flows in Parallel Channels
title_sort study of inertia and compressibility effects on the density wave oscillations of two-phase boiling flows in parallel channels
publisher Isfahan University of Technology
series Journal of Applied Fluid Mechanics
issn 1735-3572
publishDate 2017-01-01
description In this research, a theoretical model is presented to investigate the density wave oscillations (DWOs), in two horizontal parallel channels with lumped parameter model based on two phase homogeneous hypothesis. The parallel channel is composed of the entrance section, heating section and outlet section and the model consists of the boiling channel model, pressure drop model, parallel channel model, constructive model and inertia and compressibility effects, while subcooled boiling effect is neglected and the governing equations are solved by Gear method. The model is validated with experimental data of a single channel flow instability experiment. Then the flow instability in twin channel system is studied under different conditions. This model can analyze the effects of external parameters, such as fluid inertia and compressible gases on the stability margins of density wave oscillations. The results show that, the fluid inertia and compressible gases can significantly change the stability margins of two parallel channels; in fact, the stability behavior of two parallel channel system improves with increasing the inlet inertia and outlet compressibility but, increasing the outlet inertia and inlet compressibility have negative effects the system stability.
topic Density wave oscillations; Parallel channels; Fluid inertia effects; Compressibility effects.
url http://jafmonline.net/JournalArchive/download?file_ID=43813&issue_ID=245
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AT skazemi studyofinertiaandcompressibilityeffectsonthedensitywaveoscillationsoftwophaseboilingflowsinparallelchannels
AT sniazi studyofinertiaandcompressibilityeffectsonthedensitywaveoscillationsoftwophaseboilingflowsinparallelchannels
AT padibi studyofinertiaandcompressibilityeffectsonthedensitywaveoscillationsoftwophaseboilingflowsinparallelchannels
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