• CN:11-2187/TH
  • ISSN:0577-6686

›› 2013, Vol. 49 ›› Issue (14): 119-124.

• 论文 • 上一篇    下一篇

液体通流矩形槽道可渗透壁面处气泡生长及液相侵渗传输特性研究

丁玉栋;廖强;朱恂;王宏;刘忠海   

  1. 重庆大学低品位能源利用技术及系统教育部重点实验室
  • 发布日期:2013-07-20

Characteristics of Bubble Growth and Water Invasion at the Permeable Sidewall in Rectangular Liquid Flow Channel

DING Yudong;LIAO Qiang;ZHU Xun;WANG Hong;LIU Zhonghai   

  1. Key Laboratory of Low-grade Energy Utilization Technologies and Systems, Chongqing University
  • Published:2013-07-20

摘要: 利用含液体通流槽道的二维多孔网络窄缝通道试验研究气、液流速对液体通流矩形槽道可渗透壁面处气泡生长、脱离及液相向多孔网络窄缝通道内侵渗传输特性的影响。结果表明:当可渗透壁面上气泡进入快速生长期后,多孔网络内出现明显的水侵渗现象;多孔网络内气体流速较小时,可渗透壁面上单气泡脱离体积随气体流速的增加而增大,液相最大侵渗距离随气体流速的增加而减小;多孔网络内气体流速较大时,单气泡脱离体积随着气体流速的增加有所减小,可渗透壁面上出现多孔成泡,多孔成泡时常伴随气泡回缩现象;随通流槽道内水流速的增加,可渗透壁面上单气泡脱离体积逐渐减小,但水向多孔网络的最大侵渗距离增加。

关键词: 可渗透壁面, 可视化试验, 两相流, 气泡, 侵渗传输

Abstract: Visual experiments are conducted for studying the characteristics of bubble growth at the permeable sidewall in rectangular liquid flow channel and water invasion in reticulate structure with uniform small channels. The results show that water invasion process can be observed when the bubble is at the rapid growth stage. Under the smaller air flow rate conditions, single bubble departure volume increases with the increasing of air flow rate, but the largest invasion height of water decreases with the increasing of air flow rate. Under the larger air flow rate conditions, single bubble departure volume reduces with the increasing of air flow rate, and the phenomenon of air bubbled from more than one pore usually occurrs at the permeable sidewall, which along with small bubbles rapidly shrink and disappear. With the increasing of water flow rate, single bubble departure volume reduces, however, the largest invasion height of water increases in reticulate structure.

Key words: Bubble, Invasion, Permeable sidewall, Two-phase flow, Visualization study

中图分类号: