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A bubble mechanistic model for subcooled boiling flow predictions

journal contribution
posted on 2024-10-31, 23:47 authored by Guan Yeoh, Jiyuan TuJiyuan Tu
Population balance equations combined with a three-dimensional two-fluid model are employed to predict subcooled boiling flow at low pressure in a vertical annular channel. The MUSIG (Multiple-Size-Group) model implemented in CFX4.4 is extended to account for the wall nucleation and condensation in the subcooled boiling regime. Comparison of model predictions against local measurements is made for the void fraction, bubble Sauter diameter, interfacial area concentration, bubble population density, and gas and liquid velocities covering a range of different mass and heat fluxes and inlet subcooling temperatures. Good agreement is achieved with the local radial void fraction, bubble Sauter diameter, interfacial area concentration, bubble population density, and liquid velocity profiles against measurements. However, further improvement is needed for the accurate prediction of the vapor velocity using the present bubble mechanistic model. A proposal to include an algebraic slip model to account for bubble separation in the MUSIG boiling model is presented.

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    ISSN - Is published in 10407790

Journal

Numerical Heat Transfer Part B: Fundamentals

Volume

45

Issue

5

Start page

475

End page

493

Total pages

19

Publisher

Taylor and Francis

Place published

London

Language

English

Copyright

Copyright © Taylor & Francis Inc.

Former Identifier

2004001733

Esploro creation date

2020-06-22

Fedora creation date

2009-02-27

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