CIESC Journal

• Volume 1 • 上一篇    下一篇

SOLID-LIQUID SUSPENSION SYSTEM IN AGITATED TANK WITH DRAFT TUBE

程大壮; 王英琛; 林猛流; 吴德钧; 施力田   

  1. Department of Chemical Engineering, Beijing Institute of Chemical Technology, Beijing 100029, China
  • 收稿日期:1992-01-15 修回日期:1992-08-10 出版日期:1993-06-28 发布日期:1993-06-28
  • 通讯作者: 程大壮

SOLID-LIQUID SUSPENSION SYSTEM IN AGITATED TANK WITH DRAFT TUBE

CHENG Dazhuang; WANG Yingchen; LIN Mengliu; WU Dejun; SHI Litian   

  1. Department of Chemical Engineering, Beijing Institute of Chemical Technology, Beijing 100029, China
  • Received:1992-01-15 Revised:1992-08-10 Online:1993-06-28 Published:1993-06-28
  • Contact: CHENG Dazhuang

摘要: Solid-liquid suspension in an agitated tank with a draft tube was investigated witha newly developed infrared turbidimeter for measuring solid concentration.The diameter of theflared inlet transition tube and the distance from the inlet to the tank bottom are two importantparameters for draft tube design The NAX-4 impeller,developed in this study,is characterized byits high flow efficiency and low power consumption.Some modifications are made to the Bald′smodel by considering the effects of solid concentration and fluid viscosity on the critical speed forcomplete off-bottom suspension.The modified equation fits the experimental data satisfactority andcan be used in scale-up design

关键词: solid-liquid suspension;agitated tank;with draft tube;suspension behavior;scale-up;mathematical model

Abstract: Solid-liquid suspension in an agitated tank with a draft tube was investigated witha newly developed infrared turbidimeter for measuring solid concentration.The diameter of theflared inlet transition tube and the distance from the inlet to the tank bottom are two importantparameters for draft tube design The NAX-4 impeller,developed in this study,is characterized byits high flow efficiency and low power consumption.Some modifications are made to the Bald′smodel by considering the effects of solid concentration and fluid viscosity on the critical speed forcomplete off-bottom suspension.The modified equation fits the experimental data satisfactority andcan be used in scale-up design

Key words: solid-liquid suspension, agitated tank, with draft tube, suspension behavior, scale-up, mathematical model