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THE EFFECT OF MIXING PROMOTORS ON SWEEPING GAS MEMBRANE DISTILLATION SYSTEM PERFORMANCE

机译:混合促进剂对扫气膜蒸馏系统性能的影响

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Computational fluid dynamics simulations were conducted to model the effect of adding mixing promoters in sweeping gas membrane distillation modules. Net-type spacers of 45° are placed in the feed side while membrane corrugation is employed with the tips of the corrugation pointing towards the permeate side. The membrane corrugation is of chevron type. The membrane is considered as a functional surface, and the vapor flux through the membrane is modeled using the Dusty-Gas model. The vapor flux equation couples the vapor pressure variation across the membrane with the feed concentration. The flow inside the channels with mixing promoters is considered turbulent. The k - ω SST turbulent model is used to model the steady-state turbulent structures inside the channels. The flow rate in the feed side is fixed, and the flow rate in the permeate channel is varied so that Re_p = 1000,1500, and 2000 are considered. The inlet feed and permeate temperatures, and the membrane properties are fixed. The results indicate that the presence of mixing promoters increases the vapor permeation through the membrane by alleviation of the concentration and temperature polarization effects. The mixing promoters are more effective at high flow rates in both channels.
机译:进行计算流体动力学模拟以模拟在扫煤蒸馏模块中添加混合促进剂的效果。将45°的净型间隔物置于进料侧,而膜波纹与朝向渗透物侧的波纹的尖端采用。膜波纹是雪佛龙型。将膜被认为是功能表面,并且通过粉尘气体模型建模通过膜的蒸汽通量。蒸汽磁通方程通过进料浓度将蒸汽压力变化耦合在膜上。具有混合促进剂的通道内的流动被认为是湍流的。 K-ωSST湍流模型用于在通道内模拟稳态湍流结构。进料侧的流速是固定的,并且渗透通道中的流速变化,从而考虑RE_P = 1000,1500和2000。入口进料和渗透温度和膜特性是固定的。结果表明,混合促进剂的存在通过减轻浓度和温度极化效应来增加通过膜的蒸汽渗透。混合促进剂在两个通道中的高流速中更有效。

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