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释放器缝隙深度对气浮微气泡生成规律的影响

虞玲 邢普 左名君 黄文波 张志超 陆伟豪

中国农业科技导报2026,Vol.28Issue(6):96-103,8.
中国农业科技导报2026,Vol.28Issue(6):96-103,8.DOI:10.13304/j.nykjdb.2024.0867

释放器缝隙深度对气浮微气泡生成规律的影响

Effect of Gap Depth on Bubble Formation in Dissolved Gas Release

虞玲 1邢普 1左名君 1黄文波 1张志超 1陆伟豪1

作者信息

  • 1. 南昌航空大学航空制造与机械工程学院,南昌 330063
  • 折叠

摘要

Abstract

Air floating water purification technology is a technology that can quickly realize sewage treatment,which is mainly used in printing and dyeing,chemical industry,food and petroleum and other fields.Pressure dissolved gas method is one of the important methods to generate small bubbles in the process of air floating purification.In order to better improve the air flotation efficiency,based on the analysis of the working principle of TS type dissolved gas release based on the pressure dissolved gas flotation method,the internal flow field of the release under different pressures and different gap depths were simulated by the CFD(computational fluid dynamics)simulation tools,and an experimental platform was built for the generation of micro-bubbles combined with the pressure dissolved gas method.The results showed that,with the increase of gap depth,the velocity gradient inside the release decreased,especially at the joint of the orifice and gap,and the turbulent kinetic energy inside the release gradually decreased,and the turbulence intensity decreased,thus the gas phase fraction inside the release decreased.With the increase of pressure,the gas phase holdup inside the release increased significantly,and the gas phase holdup at the gap reached the maximum value,and the area of low pressure region was also obvious,which had great influence on the size of generated bubble.Therefore,it was necessary to select the appropriate gap depth of the release device.

关键词

气泡/TS型溶气释放器/CFD流体模拟/压力溶气气浮法/缝隙深度/压力

Key words

air bubbles/TS type dissolved gas release/CFD fluid simulation/pressure dissolved gas floatation method/gap depth/pressure

分类

农业科技

引用本文复制引用

虞玲,邢普,左名君,黄文波,张志超,陆伟豪..释放器缝隙深度对气浮微气泡生成规律的影响[J].中国农业科技导报,2026,28(6):96-103,8.

基金项目

江西省重点研发计划项目(20202BBF63010). (20202BBF63010)

中国农业科技导报

1008-0864

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