化工学报 ›› 2021, Vol. 72 ›› Issue (4): 1965-1974.DOI: 10.11949/0438-1157.20200928
蓝敏乐1,4(),谭博仁1,4,许东兵1,2,王勇1,2,3(),齐涛1,2,3
收稿日期:
2020-07-13
修回日期:
2020-10-10
出版日期:
2021-04-05
发布日期:
2021-04-05
通讯作者:
王勇
作者简介:
蓝敏乐(1996—),男,硕士研究生,基金资助:
LAN Minle1,4(),TAN Boren1,4,XU Dongbing1,2,WANG Yong1,2,3(),QI Tao1,2,3
Received:
2020-07-13
Revised:
2020-10-10
Online:
2021-04-05
Published:
2021-04-05
Contact:
WANG Yong
摘要:
管型混合澄清槽在工业生产中具有广阔的应用前景。通过计算流体力学分别对管型混合澄清槽内的混合室和澄清室进行数值模拟,系统地探究了分散相液滴尺寸(d32= 100~500 μm)、进料油水比(O∶A = 1∶1~1∶5)、入口挡板及入口位置对混合澄清效果的影响,并将模拟结果与传统方型混合澄清槽进行对比。结果表明,管型混合室内的流场分布更合理,不易形成流动死区。管型混合室内搅拌桨上方和下方形成压力更小的低压区,流体的湍动能更大,搅拌性能更好。在混合室中,降低分散相d32和进料油水比能够提高混合性能。在澄清室中,提高分散相d32和降低进料油水比能够提高澄清性能,入口挡板能够有效提高澄清性能。
中图分类号:
蓝敏乐, 谭博仁, 许东兵, 王勇, 齐涛. 管型混合澄清槽内的液-液两相流的数值模拟[J]. 化工学报, 2021, 72(4): 1965-1974.
LAN Minle, TAN Boren, XU Dongbing, WANG Yong, QI Tao. Numerical simulation of liquid-liquid two-phase flow in tubular mixer-settler[J]. CIESC Journal, 2021, 72(4): 1965-1974.
最大流速的百分比/% | 死区体积分数/% | |
---|---|---|
管型混合澄清槽 | 方型混合澄清槽 | |
5 | 1.23 | 2.42 |
7.5 | 4.13 | 4.88 |
10 | 7.72 | 8.84 |
12.5 | 16.2 | 18.7 |
15 | 32.4 | 33.7 |
表1 两种混合室内的死区体积分数
Table 1 Volume fraction of dead zone in the two mixers
最大流速的百分比/% | 死区体积分数/% | |
---|---|---|
管型混合澄清槽 | 方型混合澄清槽 | |
5 | 1.23 | 2.42 |
7.5 | 4.13 | 4.88 |
10 | 7.72 | 8.84 |
12.5 | 16.2 | 18.7 |
15 | 32.4 | 33.7 |
混合澄清槽 | 平均湍动能/(m2/s2) | 平均有机相相含率 | 有机相相含率方差 |
---|---|---|---|
管型混合澄清槽 | 0.004145 | 0.2449 | 0.009062 |
方型混合澄清槽 | 0.003566 | 0.2400 | 0.007507 |
表2 管型和方型混合澄清槽的平均湍动能、平均有机相相含率和有机相相含率方差
Table 2 Average turbulent kinetic energy, average organic phase holdup and variance of organic phase holdup in tubular and square mixer
混合澄清槽 | 平均湍动能/(m2/s2) | 平均有机相相含率 | 有机相相含率方差 |
---|---|---|---|
管型混合澄清槽 | 0.004145 | 0.2449 | 0.009062 |
方型混合澄清槽 | 0.003566 | 0.2400 | 0.007507 |
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