鉄と鋼
Online ISSN : 1883-2954
Print ISSN : 0021-1575
ISSN-L : 0021-1575
円筒容器内の水銀浴中へ吹込まれた水噴流の挙動
井口 学竹田 正朗植村 知正森田 善一郎
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1994 年 80 巻 8 号 p. 605-610

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Deionized water was injected through a single-hole nozzle at bottom center into a mercury bath in a cylindrical vessel. Water droplets were generated at the nozzle exit and they rose in the bath spreading in the radial direction. The holdup, frequency, mean rising velocity, and mean diameter of water droplets were measured with a two-contact electroresistivity probe and a laser void meter. The laser void meter can detect the arrival of water droplets and the rising velocity of them by analyzing the reflection of a laser beam at the interface between the two liquids. Both measured values of the water holdup α and water droplet frequency fw followed the Gaussian distribution. Consequently, empirical correlations for α and fw were derived in the momentum region near the nozzle exit and in the buoyancy region far from the nozzle exit by referring to those derived for bubbling jets in a cylindrical vessel. The mean rising velocity of water droplets uw was calculated from the mass balance of rising water, and the mean diameter was calculated from the relation dw=1.5α uw/fw. Empirical correlations for α, fw, uwand dw were almost the same as their individual correlations for the bubble characteristics. Therefore there is no essential difference between a liquid-gas jet and a liquid-liquid jet.

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