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Eulerian-Eulerian modelling and computational fluid dynamics simulation of wire mesh demisters in MSF plants

机译:无国界医生工厂中丝网除雾器的欧拉-欧拉建模和流体动力学模拟

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摘要

Purpose - The purpose of this study is to focus on simulation of wire mesh demisters in multistage flash desalination (MSF) plants. The simulation is made by the use of computational fluid dynamics (CFD) software. Design/methodology/approach - A steady state and two-dimensional (2D) model was developed to simulate the demister. The model employs an Eulerian-Eulerian approach to simulate the flow of water vapor and brine droplets in the demister. The computational domain included three zones, which are the vapor space above and below the demister and the demister. The demister zone was modeled as a tube bank arrange or as a porous media. Findings - Sensitivity analysis of the model showed the main parameters that affect demister performance are the vapor velocity and the demister permeability. On the other hand, the analysis showed that the vapor temperature has no effect on the pressure drop across the demister. Research limitations/implications - The developed model was validated against previous literature data as well as real plant data. The analysis shows good agreement between model prediction and data. Originality/value - This work is the first in the literature to simulate the MSF demister using CFD modeling. This work is part of a group effort to develop a comprehensive CFD simulation for the entire flashing stage of the MSF process, which would provide an extremely efficient and inexpensive design and simulation tool to the desalination community.
机译:目的-这项研究的目的是着重于模拟多级闪蒸脱盐(MSF)工厂中的丝网除雾器。通过使用计算流体动力学(CFD)软件进行模拟。设计/方法/方法-开发了稳态和二维(2D)模型来模拟除雾器。该模型采用欧拉-欧拉方法来模拟除雾器中水蒸气和盐水液滴的流动。计算域包括三个区域,分别是除雾器和除雾器上方和下方的蒸气空间。将除雾器区域建模为试管排列或多孔介质。研究结果-模型的敏感性分析表明,影响除雾器性能的主要参数是蒸汽速度和除雾器渗透率。另一方面,分析表明蒸气温度对除雾器两端的压降没有影响。研究局限/意义-已开发的模型已针对先前的文献数据和实际植物数据进行了验证。分析表明模型预测与数据之间具有良好的一致性。原创性/价值-这项工作是文献中首次使用CFD建模来模拟MSF除雾器。这项工作是小组为MSF过程的整个闪蒸阶段开发全面的CFD模拟的工作的一部分,这将为淡化社区提供一种极其有效且廉价的设计和模拟工具。

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