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首页> 外文期刊>Journal of Membrane Science >Pressure, flow, and concentration profiles in open and spacer-filled membrane channels
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Pressure, flow, and concentration profiles in open and spacer-filled membrane channels

机译:开放和间隔填充的膜通道中的压力,流量和浓度曲线

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A finite element model was developed to study momentum and mass transport in cross flow membrane filtration systems with open and spacer-filled channels. Simulated conditions represented a range of membrane desalination applications and considered both open and spacer-filled straight through channels, as well as a geometry representing lab-scale cross flow membrane filtration cells. The finite element model agreed with classical analytical models for pressure drop, fluid shear, and concentration polarization in straight-through open channels at low flux and high cross flow. In simulations of representative lab-scale cross flow membrane filters, stagnant regions at the entrance and exit regions, as well as developing flow lead to significant deviations between analytic model and finite element model results. In spacer-filled channels, axial pressure drops were substantially higher than in open channels, varying by a factor of 2 for different spacer configurations (cavity < zigzag < submerged), while shear rates were on average enhanced, but appeared to create stagnant zones where the filaments contacted the membrane. On average, feed channel spacers reduced the extent of concentration polarization because of the enhanced wall shear rates. However, the stagnant regions (in front and behind some spacer filaments) led to enhanced concentration polarization, which suggests certain spacer designs could promote local scale and cake formation in spiral wound elements. (c) 2005 Elsevier B.V. All rights reserved.
机译:开发了一个有限元模型来研究具有开放和间隔填充通道的错流膜过滤系统的动量和质量传输。模拟条件代表了一系列膜淡化应用,并考虑了开放式和间隔式填充的直通通道,以及代表实验室规模的错流式膜过滤池的几何形状。有限元模型与经典分析模型一致,适用于低通量和高横流下直通明渠中的压降,流体剪切和浓度极化。在代表性的实验室规模的横流膜过滤器的模拟中,入口和出口区域的停滞区域以及流动的发展导致解析模型结果与有限元模型结果之间的显着偏差。在填充隔离物的通道中,轴向压降明显高于裸露通道,对于不同的隔离物配置(型腔<之字形<浸没式),轴向压降变化了2倍,而剪切速率平均有所提高,但似乎形成了停滞区域细丝接触膜。平均而言,进料通道间隔物由于壁剪切速率的提高而降低了浓差极化的程度。但是,停滞区域(在某些隔离物丝的前面和后面)导致浓度极化增强,这表明某些隔离物设计可以促进螺旋缠绕元件中的局部结垢和结块形成。 (c)2005 Elsevier B.V.保留所有权利。

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