The Effect of the Embedded Spacers on the Performance of Direct Contact Membrane Distillation System Operating With Different Inlet Feed Temperature

Anas M. Alwatban, Ahmed M. Alshwairekh, U. Alqsair, Robert Krysko, Abdullah A. Alghafis, A. Oztekin
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引用次数: 1

Abstract

Computational fluid dynamics simulations are used to model the effect of the inlet feed temperature in direct contact membrane distillation modules. Embedded spacers are used as a local mixing promoter tool. Net-type spacers of angle 45° are used as spacers. The presence of the spacers will mitigate the temperature and concentration polarization effects. The calculation of the vapor flux through the membrane is based on the Dusty-Gas model. The membrane is considered as a functional surface, and the embedded spacers are treated as impermeable surfaces. The vapor flux equation couples the variation of the vapor flux in the feed and the permeate channel with the variation of the feed concentration along the membrane. The flow is considered turbulent in channels containing embedded spacers. The k–ω SST turbulent model is used to characterize the steady-state turbulent structures inside the flow channels. The flow rate in the feed and the permeate channels is fixed. The membrane properties are also fixed. The inlet feed temperature is varying while fixing the inlet permeate temperature. The results indicate that the embedded spacers increase the vapor flux permeation while the temperature and concentration polarizations are mitigated. As the inlet feed temperature is increased, the effect of the embedded spacers becomes more significant.
研究了不同进料温度下,内嵌式隔膜对直接接触膜蒸馏系统性能的影响
采用计算流体动力学方法对直接接触式膜蒸馏装置进料温度的影响进行了模拟。嵌入式垫片用作局部混合促进器工具。采用角度为45°的网型垫片作为垫片。隔离剂的存在可以减轻温度和浓度的极化效应。通过膜的蒸汽通量的计算是基于尘埃-气体模型。所述膜被认为是一个功能表面,所嵌入的间隔片被视为不渗透表面。汽通量方程将进料和渗透通道内汽通量的变化与进料沿膜浓度的变化耦合在一起。在含有嵌入间隔的通道中,流动被认为是湍流。采用k -ω海表温度紊流模型来表征流道内的稳态紊流结构。进料通道和渗透通道的流量是固定的。膜的性质也是固定的。在固定进口渗透温度的同时,进料温度也在变化。结果表明,嵌入间隔层增加了蒸汽通量的渗透,减轻了温度和浓度的极化。随着进料温度的升高,预埋垫片的影响越来越明显。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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