期刊论文详细信息
JOURNAL OF CHEMICAL ENGINEERING OF JAPAN
Turbulent Properties in Bubble-Flow Region in External-Loop Airlift Bubble Column
Kenji Okada1  Yasuharu Akagi1  Shinji Shibano1 
[1] Department of Applied Chemistry, Okayama University of Science
关键词: Airlift Bubble Column;    Gas-Liquid Two-Phase Flow;    Turbulence Structure;    Power Spectrum;    Flow Model;    Bubble Size;   
DOI  :  10.1252/jcej.26.637
来源: Maruzen Company Ltd
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【 摘 要 】

References(18)Cited-By(9)Turbulent properties of the bubble flow region in an airlift bubble column were examined using an anemometer for water and CMC solutions. The turbulent structures of the gas-liquid system in these liquids were evaluated by the power spectrum of turbulent eddies. The power spectrums of the liquids decayed with decrease in the size of eddies with a slope of –5/3 to –2. This is almost comparable to that of Kolmogoroff’s spectrum law for an isotropic turbulence. The radial distributions of turbulent intensity, u′l, macro-scale of turbulent eddies, Λf, bubble diameter, dB, and bubble rise velocity, uB, were measured. The influence of the media on these properties was examined. The turbulent viscosity, νt, was evaluated from the values of u′l, and Λf for the liquids. It was found that νt of gas-liquid two-phase flow was five times higher than that of a single-phase flow of water. Using these turbulent properties, the liquid superficial velocity, UL, slip velocity of bubble, uBS, and bubble diameter (Sauter diameter), dBS, in the riser were estimated theoretically. The estimated values agreed with those obtained experimentally.

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