A Water Modeling Study on Circulation Flow Characteristics of Liquid in 145 t RH Vacuum Refining Unit
|更新时间:2026-01-21
|
A Water Modeling Study on Circulation Flow Characteristics of Liquid in 145 t RH Vacuum Refining Unit
Special SteelVol. 35, Issue 1, Pages: 1-3(2014)
作者机构:
东北大学材料与冶金学院,沈阳,110819
作者简介:
基金信息:
DOI:
CLC:
Received:01 July 2013,
Online First:05 September 2022,
Published:05 September 2014
稿件说明:
移动端阅览
朴峰云, 郑淑国, 朱苗勇. A Water Modeling Study on Circulation Flow Characteristics of Liquid in 145 t RH Vacuum Refining Unit[J]. Special Steel, 2014, 35(1): 1-3.
DOI:
朴峰云, 郑淑国, 朱苗勇. A Water Modeling Study on Circulation Flow Characteristics of Liquid in 145 t RH Vacuum Refining Unit[J]. Special Steel, 2014, 35(1): 1-3.DOI:
A Water Modeling Study on Circulation Flow Characteristics of Liquid in 145 t RH Vacuum Refining Unit
混匀时间随提升气量增加而呈非线性减小;500 mm的浸渍管浸渍深度和526 mm的真空室液面高度下均出现较理想的循环流量;130 m
3
/h提升气量、600 mm浸渍管浸渍深度和526 mm真空室液面高度可获得最佳循环流动特性。
Abstract
Based on similarity principle
a water model with geometrical-similar ratio 1:7 is established to study circulation flow behavior of liquid in 145 t RH vacuum refining unit. The effect of lifting gas flowrate (60 〜140 m
3
/h)
inserting depth of snorkel (400 ~ 600 mm) and liquid height in vacuum chamber (426 ~526 mm) on circulation flow rate and mixing time of liquid is researched. Results show that with increasing lifting gas flow-rate the circulation flow rate increases in approximate linear relation while the mixing time of liquid decreases in non-linear relation; the more ideal circulation flow rate of liquid is occurred with inserting depth of snorkel 500 mm and liquid height in vacuum chamber 526 mm ; with 130 m
3
/h lifting gas flow-rate
600 mm inserting depth of snorkel and 526 mm liquid height in vacuum chamber the optimum liquid circula