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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Persian Gulf desalination using air gap membrane distillation: Numerical simulation and theoretical study
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Persian Gulf desalination using air gap membrane distillation: Numerical simulation and theoretical study

机译:气隙膜蒸馏法对波斯湾海水淡化的数值模拟和理论研究

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摘要

A simultaneous heat and mass transfer model in air gap membrane distillation has been developed and validated with experimental data using MATLAB, in order to enhance its performance in desalination of Persian Gulf and to get more flux. The effect of operating parameters including feed temperature, concentration and velocity, condensate fluid temperature and velocity, thickness of air gap of permeate side, heat transfer coefficient (HTC) on permeate flux has been considered. The influence of some membrane characteristics including its thickness, tortuosity, porosity, and pore size distribution on permeate flux has also been studied. The results revealed that increase of feed temperature and velocity, HTC, membrane porosity and pore size distribution has improved the permeate flux. In contrast, the permeate flux decreased with feed concentration and air gap distance as operation parameters, and thickness and tortuosity as membrane characteristics. The temperature polarization coefficient decreased with feed temperature and reduced while thermal conductivity of the membrane material decreased. At elevated temperatures, increasing of HTC affects more strongly on permeate flux; i.e. a 25% increase in flux at 70 degrees C reduced to 14% at 50 degrees C. Comprising to experimental data, just about 6% average deviation was observed for this ultra-simple model. (C) 2015 Elsevier B.V. All rights reserved.
机译:开发了气隙膜蒸馏的同时传热传质模型,并使用MATLAB进行了实验数据验证,以增强其在波斯湾海水淡化中的性能并获得更多的通量。已经考虑了包括进料温度,浓度和速度,冷凝液温度和速度,渗透侧气隙厚度,传热系数(HTC)在内的操作参数对渗透通量的影响。还研究了某些膜特性(包括其厚度,曲折度,孔隙率和孔径分布)对渗透通量的影响。结果表明,进料温度和速度,HTC,膜孔隙率和孔径分布的增加提高了渗透通量。相反,渗透通量随着进料浓度和气隙距离作为操作参数以及厚度和曲折度作为膜特性而降低。温度极化系数随着进料温度的降低而降低,而膜材料的导热系数降低。在升高的温度下,HTC的增加对渗透通量的影响更大。也就是说,在70摄氏度时,磁通量增加25%,在50摄氏度时,磁通量增加14%。根据实验数据,该超简单模型的平均偏差仅为6%。 (C)2015 Elsevier B.V.保留所有权利。

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