Interplay between particulate fouling and its flow disturbance: Numerical and experimental studies
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초록

In this study, we examine the complex interplay between particulate fouling and flow disturbance via particle simulation and microfluidic experiments. From the experiment, it is found that a particle is transported and deposited following the streamline, which is affected by the existing particle deposit. Inspired by this microfluidic observation, we develop a novel coarse-grained particle simulation, which continuously updates the flow field by considering the particle deposits, to investigate particulate fouling more intensively. Four physical factors are proposed to describe quantitatively the particulate fouling: effective collision, hydrodynamic boundary layer, inaccessible zone, and high shear stress region. In the initial stage of fouling, a number of particles are deposited within the growing hydrodynamic boundary layer, where effective collisions are readily achieved. In the latter stage of fouling, the inaccessible zone and high shear stress region are expanded, which causes the particle deposition rate to decrease. This result provides a comprehensive understanding of the particulate fouling through the combination of the four physical factors. © 2021 Elsevier B.V.

키워드

Flow-couplingMicrofluidicsNumerical simulationParticulate foulingBoundary layersDeposition ratesFoulingHydrodynamicsShear stressFlow couplingFlow disturbancesHigh shearHydrodynamic boundary layersNumerical and experimental studyParticle depositsParticle simulationsParticulate flowsParticulate foulingPhysical factorsMicrofluidicsarticleboundary layercomputer simulationcontrolled studyexperimental studyhydrodynamicsmicrofluidicsshear stress
제목
Interplay between particulate fouling and its flow disturbance: Numerical and experimental studies
저자
Jung, Seon YeopJeong, JiyeoupPark, Jun DongAhn, Kyung Hyun
DOI
10.1016/j.memsci.2021.119497
발행일
2021-10
유형
Article
저널명
Journal of Membrane Science
635
페이지
1 ~ 11