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膜通道内三角翼对流传质强化效果及其与矩形翼的比较(英文)

Convective mass transfer enhancement in a membrane channel by delta winglets and their comparison with rectangular winglets
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摘要 Numerical calculations were conducted to simulate the flow and mass transfer in narrow membrane channels equipped with delta winglets,which are often used as longitudinal vortex generators to enhance heat transfer in heat exchanger applications.The channel consists of an impermeable solid wall and a membrane.The delta winglets are attached to the solid wall surface to enhance the mass transfer near the membrane surface and suppress the concentration polarization.The winglet performance was evaluated in terms of concentration polarization factor versus consumed pumping power.Calculations were implemented for NaCl solution flow in a membrane channel having a height of 2.0 mm for Reynolds numbers ranging from 400 to 1000.The delta winglets were optimized under equal pumping power condition,and the results of optimization suggest winglet height of 5/6 of the channel height,aspect ratio of 2.0,attack angle of 30°,and a winglet interval equal to the channel height.The optimal delta winglets were compared with the optimal rectangular winglets we found previously,and it is shown that the rectangular winglets yield a somewhat better performance than the delta winglets. Numerical calculations were conducted to simulate the flow and mass transfer in narrow membrane channels equipped with delta winglets, which are often used as longitudinal vortex generators to enhance heat transfer in heat exchanger applications. The channel consists of an impermeable solid wall and a membrane. The delta winglets are attached to the solid wall surface to enhance the mass transfer near the membrane surface and suppress the concentration polarization. The winglet performance was evaluated in terms of concentration polarization factor versus consumed pumping power. Calculations were implemented for NaCl solution flow in a membrane channel having a height of 2.0 mm for Reynolds numbers ranging from 400 to 1000. The delta wing- lets were optimized under equal pumping power condition, and the results of optimization suggest winglet height of 5/6 of the channel height, aspect ratio of 2.0, attack angle of 30% and a winglet interval equal to the channel height The optimal delta winglets were compared with the optimal rectangular winglets we found previously, and it is shown that the rectangular winglets yield a somewhat better performance than the delta winglets. @ 2015 The Chemical Industry and Engineering Society of China, and Chemical Industry Press. All rights reserved.
出处 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2015年第11期1755-1762,共8页 中国化学工程学报(英文版)
基金 Supported by Tsinghua University Initiative Scientific Research Program(20131089319)
关键词 对流传质 强化传热 膜通道 三角翼 矩形翼 化学工业出版社 纵向涡发生器 数值计算 Membrane processConcentration polarizationMass transfer enhancementDelta wingletPumping power
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