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Measurement of velocity in swirling flows of liquid metals in the presence of a magnetic field

Studies of the dynamics of a round submerged jet of liquid metal in a transverse magnetic field. The experiments were performed in the range of Reynolds numbers up to 1000 and Hartmann numbers up to 1300 using a probe technique for measuring velocity using potential sensors. Detailed three-dimension...

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Bibliographic Details
Published in:Journal of physics. Conference series 2021-11, Vol.2088 (1), p.12025
Main Authors: Listratov, Ya I, Kolesnikov, Yu B, Belyaev, I A, Sviridov, E V, Krasnov, D, Zikanov, O
Format: Article
Language:English
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Summary:Studies of the dynamics of a round submerged jet of liquid metal in a transverse magnetic field. The experiments were performed in the range of Reynolds numbers up to 1000 and Hartmann numbers up to 1300 using a probe technique for measuring velocity using potential sensors. Detailed three-dimensional flow structures are visualized using a direct numerical simulation method independent of the experiment. The paper presents data on the averaged velocity field and statistical characteristics of the flow, reproducing the complex nature of a substantially unsteady flow, in which zones of reverse fluid flows are detected and a significant heterogeneity of the velocity field is observed.
ISSN:1742-6588
1742-6596
DOI:10.1088/1742-6596/2088/1/012025