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- W1661707064 abstract "In a continuous casting of steel, argon bubbles are injected from a nozzle to prevent nozzle clogging. However, this sometimes causes a problem of the entrapment of inclusions in a solidifying metal front. On the other hand, an electromagnetic brake has been utilized to control molten metal flow in the continuous casting process. Therefore, the understanding of bubble behavior in molten steel under the electromagnetic brake in which inertial force, Lorentz force and buoyancy force play an important role is essential for the optimization of the continuous casting process of steel. A water model experiment is one of the typical methods for direct observation of bubble behavior while it is impossible to use the water model experiment for this purpose because the Lorentz force is not induced by the bubble motion in the water. The Lorentz force is excited when a molten metal with low melting temperature is used instead of the water, however, the direct observation of the bubble motion is impossible because of opaque nature of metals. In order to overcome this problem and to get useful information for the bubble behavior under the electromagnetic brake, the bubble behavior has been simulated by use of a strong electrolyte under a high magnetic field. The principle of the simulation is based on that the ratios among those forces in the simulation system are the nearly same as the ratios in a practical operation. New knowledge about the effect of Lorentz force on the bubble behavior is discussed in this manuscript." @default.
- W1661707064 created "2016-06-24" @default.
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- W1661707064 date "2008-01-01" @default.
- W1661707064 modified "2023-09-26" @default.
- W1661707064 title "Bubble Rising Velocity in Sodium Chloride Aqueous Solution under Horizontal DC High Magnetic Field" @default.
- W1661707064 doi "https://doi.org/10.1063/1.2897873" @default.
- W1661707064 hasPublicationYear "2008" @default.
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