CIESC Journal

• Volume 4 •    下一篇

THEORETICAL AND EXPERIMENTAL STUDIES ON BUBBLE DIAMETER AND GAS HOLDUP IN AERATED STIRRED TANKS

高正明; 王英琛; 施力田; 傅举孚   

  1. Department of Chemical Engineering, Beijing University of Chemical Technology, Beijing 100029, China

  • 收稿日期:1995-06-26 修回日期:1995-11-30 出版日期:1996-12-28 发布日期:1996-12-28
  • 通讯作者: 高正明

THEORETICAL AND EXPERIMENTAL STUDIES ON BUBBLE DIAMETER AND GAS HOLDUP IN AERATED STIRRED TANKS

GAO Zhengming; WANG Yingchen; SHI Litian; FU Jufu   

  1. Department of Chemical Engineering, Beijing University of Chemical Technology, Beijing 100029, China
  • Received:1995-06-26 Revised:1995-11-30 Online:1996-12-28 Published:1996-12-28
  • Contact: GAO Zhengming

摘要: Experiments were carried out in geometrically similar vessels with diameters of 0.287, 0.495 and 1.1m respectively. Bubble diameter distribution was measured with a dual electric conductivity probe placed in the tanks. Gas holdup was measured by spillover method. Considering the coalescence of bubbles in the upper circulation region of the aeration stirred tank, introducing the concepts of turbulence decay and effective viscosity of gas-liquid system into this work, and taking into account the equilibrium between the surface energy of the bubbles and the energy supplied by agitation, mathematical models for bubble diameter and mean gas holdup were derived. The mathematical models were confirmed by experimental data.

关键词: bubble diameter;gas holdup;mathematical model;gas-liquid stirred tank;agitated tank

Abstract: Experiments were carried out in geometrically similar vessels with diameters of 0.287, 0.495 and 1.1m respectively. Bubble diameter distribution was measured with a dual electric conductivity probe placed in the tanks. Gas holdup was measured by spillover method. Considering the coalescence of bubbles in the upper circulation region of the aeration stirred tank, introducing the concepts of turbulence decay and effective viscosity of gas-liquid system into this work, and taking into account the equilibrium between the surface energy of the bubbles and the energy supplied by agitation, mathematical models for bubble diameter and mean gas holdup were derived. The mathematical models were confirmed by experimental data.

Key words: bubble diameter, gas holdup, mathematical model, gas-liquid stirred tank, agitated tank