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A Review of CFD Modelling and Performance Metrics for Osmotic Membrane Processes

机译:渗透膜流程CFD建模与性能度量综述

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摘要

Simulation via Computational Fluid Dynamics (CFD) offers a convenient way for visualising hydrodynamics and mass transport in spacer-filled membrane channels, facilitating further developments in spiral wound membrane (SWM) modules for desalination processes. This paper provides a review on the use of CFD modelling for the development of novel spacers used in the SWM modules for three types of osmotic membrane processes: reverse osmosis (RO), forward osmosis (FO) and pressure retarded osmosis (PRO). Currently, the modelling of mass transfer and fouling for complex spacer geometries is still limited. Compared with RO, CFD modelling for PRO is very rare owing to the relative infancy of this osmotically driven membrane process. Despite the rising popularity of multi-scale modelling of osmotic membrane processes, CFD can only be used for predicting process performance in the absence of fouling. This paper also reviews the most common metrics used for evaluating membrane module performance at the small and large scales.
机译:通过计算流体动力学(CFD)的仿真提供了一种方便的方式,可视化流体动力学和填充间隔膜通道中的质量传输,促进螺旋缠绕膜(SWM)模块的进一步发展用于脱盐过程。本文为三种类型的渗透膜过程中使用的CFD建模提供了用于开发用于开发的CFD模型的综述:反渗透(RO),前渗透(FO)和压力延迟渗透(PRO)。目前,复杂间隔几何形状的传​​质和污垢的建模仍然有限。与RO相比,由于这种渗透驱动膜过程的相对婴儿婴儿,Pro的CFD建模非常罕见。尽管渗透膜过程的多尺度建模的普及程度不断增加,但CFD只能用于预测在没有污垢的过程中的过程性能。本文还介绍了用于评估小型和大尺度的膜组件性能的最常见度量。

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