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Uncertainty analysis of flow rate measurement for multiphase flow using CFD

Authors
Kim, Joon-HyungJung, Uk-HeeKim, SungYoon, Joon-YongChoi, Young-Seok
Issue Date
Oct-2015
Publisher
SPRINGER HEIDELBERG
Keywords
Multiphase flow; Measurement; Numerical analysis; Venturi meter; Gas volume fraction (GVF); Uncertainty; Multiphase flow model; Grace model
Citation
ACTA MECHANICA SINICA, v.31, no.5, pp.698 - 707
Indexed
SCIE
SCOPUS
Journal Title
ACTA MECHANICA SINICA
Volume
31
Number
5
Start Page
698
End Page
707
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/17011
DOI
10.1007/s10409-015-0493-7
ISSN
0567-7718
Abstract
The venturi meter has an advantage in its use, because it can measure flow without being much affected by the type of the measured fluid or flow conditions. Hence, it has excellent versatility and is being widely applied in many industries. The flow of a liquid containing air is a representative example of a multiphase flow and exhibits complex flow characteristics. In particular, the greater the gas volume fraction (GVF), the more inhomogeneous the flow becomes. As a result, using a venturi meter to measure the rate of a flow that has a high GVF generates an error. In this study, the cause of the error occurred in measuring the flow rate for the multiphase flow when using the venturi meter for analysis by CFD. To ensure the reliability of this study, the accuracy of the multiphase flow models for numerical analysis was verified through comparison between the calculated results of numerical analysis and the experimental data. As a result, the Grace model, which is a multiphase flow model established by an experiment with water and air, was confirmed to have the highest reliability. Finally, the characteristics of the internal flow field about the multiphase flow analysis result generated by applying the Grace model were analyzed to find the cause of the uncertainty occurring when measuring the flow rate of the multiphase flow using the venturi meter. A phase separation phenomenon occurred due to a density difference of water and air inside the venturi, and flow inhomogeneity happened according to the flow velocity difference of each phase. It was confirmed that this flow inhomogeneity increased as the GVF increased due to the uncertainty of the flow measurement.
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ERICA 공학대학 (DEPARTMENT OF MECHANICAL ENGINEERING)
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