Inoue Kai, Inasawa Susumu
Graduate School of Bio-Applications and Systems Engineering, Tokyo University of Agriculture and Technology 2-24-16 Nakacho, Koganei Tokyo 184-8588 Japan
Department of Chemical Engineering, Tokyo University of Agriculture and Technology 2-24-16 Nakacho, Koganei Tokyo 184-8588 Japan.
RSC Adv. 2020 Apr 21;10(27):15763-15768. doi: 10.1039/d0ra02837a.
A clear back flow was observed in the thin unidirectional drying cell of a colloidal suspension. Flow around the colloidal-particle packing front was more complex than expected, even though a colloidal suspension was confined in a narrow space with a submillimeter-scale or shorter gap height. We propose that an increase in particle concentration around the packing front induces downward flow, which is the origin for back flow inside the cell. A mathematical model, which considered both a drying induced horizontal flow and a circulation flow caused by a concentration gradient of particles, showed a reasonable agreement with experimental data for the width of the back-flow region. The concentration gradient of particles was not negligible and it generated a rather complicated flow even in a thin drying liquid film.
在胶体悬浮液的薄单向干燥池中观察到了明显的回流。尽管胶体悬浮液被限制在间隙高度为亚毫米级或更短的狭窄空间中,但胶体颗粒堆积前沿周围的流动比预期的更为复杂。我们认为,堆积前沿周围颗粒浓度的增加会引发向下流动,这是干燥池内回流的起源。一个考虑了干燥引起的水平流动和颗粒浓度梯度引起的循环流动的数学模型,与回流区域宽度的实验数据显示出合理的一致性。颗粒的浓度梯度不可忽略,即使在薄的干燥液膜中也会产生相当复杂的流动。