Journal of Nuclear Science and Technology
Online ISSN : 1881-1248
Print ISSN : 0022-3131
Magnetic Pressure Drop and Heat Transfer of Sodium-Argon Two-Phase Flow in Annular Channel under Transverse Magnetic Field
Hiroshige KUMAMARU
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1984 Volume 21 Issue 6 Pages 438-449

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Abstract
Based on simple models, magnetic pressure drop and heat transfer coefficient correlations were derived for two-component two-phase liquid metal flow in an annular channel under magnetic field. Magnetic pressure drop and heat transfer experiments of Na-Ar two-phase flow in an annular channel under magnetic field were conducted. It became clear from the experimental results that the magnetic pressure drop of two-component two-phase liquid metal flow was equal to or smaller than that of single-phase liquid metal flow under conditions of the same liquid flow rate and magnetic field strength. The measured magnetic friction factor multiplier was smaller than predictions by the correlations derived in this study. It was also revealed from the experimental results that the heat transfer coefficient of two-component two-phase liquid metal flow was equal to or slightly smaller than that of single-phase liquid metal flow under conditions of the same liquid flow rate and magnetic field strength. The tendency that the measured heat transfer coefficient ratio decreased from 1.0 with increasing the void fraction agreed with trends of predictions by the correlations derived in this study.
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