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旋转盘几何形状对动态过滤系统中流动和通量增强的影响。

The Effect of the Rotating Disk Geometry on the Flow and Flux Enhancement in a Dynamic Filtration System.

作者信息

Park Jo Eun, Kang Tae Gon, Moon Heejang

机构信息

School of Aerospace and Mechanical Engineering, Korea Aerospace University, 76 Hanggongdaehak-ro, Deogyang-gu, Goyang-si 10540, Gyeonggi-do, Republic of Korea.

Department of Smart Air Mobility, Korea Aerospace University, 76 Hanggongdaehak-ro, Deogyang-gu, Goyang-si 10540, Gyeongi-do, Republic of Korea.

出版信息

Membranes (Basel). 2023 Feb 28;13(3):291. doi: 10.3390/membranes13030291.

Abstract

A numerical study was conducted to investigate the effect of rotating patterned disks on the flow and permeate flux in a dynamic filtration (DF) system. The DF system consists of a rotating patterned disk and a stationary housing with a circular flat membrane. The feed flow is driven by the rotating disk with the angular velocity ranging from 200 to 1000 rpm and the applied pressure difference between inlet and outlet ports. Wheel-shaped patterns are engraved on the disk surfaces to add perturbation to the flow field and improve the permeate flux in the filtration system. Five disks with varying numbers of patterns were used in numerical simulations to examine the effects of the number of patterns and the angular velocity of the disk on the flow and permeate flux in the DF system. The flow characteristics are studied using the velocity profiles, the cross-sectional velocity vectors, the vortex structures, and the shear stress distribution. The wheel-shaped patterns shift the central core layer in the circumferential velocity profile towards the membrane, leading to higher shear stresses at the membrane and higher flux compared to a plain disk. When the number of patterns on the disk exceeded eight at a fixed Reynolds number, there were significant increases in wall shear stress and permeate flux compared to a plain disk filtration system with no pattern.

摘要

进行了一项数值研究,以调查旋转图案化圆盘对动态过滤(DF)系统中流动和渗透通量的影响。DF系统由一个旋转图案化圆盘和一个带有圆形平板膜的固定外壳组成。进料流由旋转圆盘驱动,角速度范围为200至1000转/分钟,并在进出口端口之间施加压差。在圆盘表面刻有轮形图案,以对流场增加扰动并提高过滤系统中的渗透通量。在数值模拟中使用了五个具有不同图案数量的圆盘,以研究图案数量和圆盘角速度对DF系统中流动和渗透通量的影响。使用速度剖面、横截面速度矢量、涡旋结构和剪应力分布来研究流动特性。与普通圆盘相比,轮形图案使圆周速度剖面中的中心核心层向膜移动,导致膜处的剪应力更高且通量更高。当在固定雷诺数下圆盘上的图案数量超过八个时,与没有图案的普通圆盘过滤系统相比,壁面剪应力和渗透通量有显著增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0837/10056996/fe5dea70265c/membranes-13-00291-g001.jpg

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