期刊文献+

Numerical Study on the Effects of Contraction Ratio in a Two-Phase Flow Injection Nozzle 被引量:1

Numerical Study on the Effects of Contraction Ratio in a Two-Phase Flow Injection Nozzle
下载PDF
导出
摘要 The Euler-Euler numerical method was used to investigate the effects of contraction ratio on twophase flow mixing with mass transfer in the flow injection nozzle. The geometric shape of the nozzle was modified to improve carbonation efficiency. A gas inlet hole was created to increase the flow mixing of CO2 with water. A nozzle throat was also introduced to increase the gas dissolution by increasing flow rates. Various contraction ratios of nozzle throat, inlet gas and liquid velocities, and gas bubble sizes were employed to determine their effects on gas hold-up, gas concentration, and mass transfer coefficient. Results revealed that the flow injection nozzle with high contraction ratios improved carbonation because of high gas hold-up. Gas concentration was directly related to contraction ratio and gas flow velocities. Carbonation reduced when high liquid velocities and large gas bubbles were employed because of inefficient flow mixing. This study indicated that flow injection nozzle with large contraction ratios were suitable for carbonation because of their ability to increase gas hold-up, gas concentration, and mass transfer coefficient. The Euler-Euler numerical method was used to investigate the effects of contraction ratio on twophase flow mixing with mass transfer in the flow injection nozzle. The geometric shape of the nozzle was modified to improve carbonation efficiency. A gas inlet hole was created to increase the flow mixing of CO2 with water. A nozzle throat was also introduced to increase the gas dissolution by increasing flow rates. Various contraction ratios of nozzle throat, inlet gas and liquid velocities, and gas bubble sizes were employed to determine their effects on gas hold-up, gas concentration, and mass transfer coefficient. Results revealed that the flow injection nozzle with high contraction ratios improved carbonation because of high gas hold-up. Gas concentration was directly related to contraction ratio and gas flow velocities. Carbonation reduced when high liquid velocities and large gas bubbles were employed because of inefficient flow mixing. This study indicated that flow injection nozzle with large contraction ratios were suitable for carbonation because of their ability to increase gas hold-up, gas concentration, and mass transfer coefficient.
作者 Haider Ali Kyung Won Kim Jae Sik Kim Jong Yun Choi Cheol Woo Park Haider Ali;Kyung Won Kim;Jae Sik Kim;Jong Yun Choi;Cheol Woo Park(School of Mechanical Engineering, Kyungpook National University, Daegu, Korea;Podomaul Co., Ltd., 1190 Kumchang-Ro, Daechang-Myon, Yeongcheon-Si, Korea;B.C.M. Co., Ltd., 81 Yeomsaekgongdancheon-Ro, Seo-Gu, Daegu, Korea)
出处 《Open Journal of Fluid Dynamics》 2016年第1期1-10,共10页 流体动力学(英文)
关键词 Flow Injection Nozzle Nozzle Throat Contraction Ratio Gas-Liquid Flow Mass Transfer Flow Injection Nozzle Nozzle Throat Contraction Ratio Gas-Liquid Flow Mass Transfer
  • 相关文献

同被引文献5

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部