ホソカワ粉体工学振興財団年報
Online ISSN : 2189-4663
ISSN-L : 2189-4663
研究助成成果報告
自由落下粒子が形成する粒子噴流の三次元数値解法の開発
内山 知実
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研究報告書・技術報告書 オープンアクセス

2004 年 12 巻 p. 89-92

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The particulate jet induced by small solid particles falling from a circular orifice into an unbounded quiescent air is simulated. The three-dimensional vortex method, proposed for the analysis of particle-laden free turbulent flow in a prior study, is employed for the simulation. It is found that the falling particles induce complicated three-dimensional unsteady air flow involving large-scale eddies. The air takes its maximum velocity at the jet centerline, and the velocity profile satisfies the self-similarity around the centerline. The effect of particle diameter on the velocity distribution for the two phases is investigated. The entrained air flow rate is favorably compared with the value predicted by the analytical models.

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This article is licensed under a Creative Commons [Attribution 2.1 JP] license.
https://creativecommons.org/licenses/by/2.1/jp/
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