会议专题

The Effect of Curvature of a Spacer-filled Channel on Fluid Flow in Spiral-Wound Membrane Modules

F1uid flow through a spiral-wound membrane module was investigated using a computational fluid dynamic(CFD)technique.The flow phenomenon through spacer-filled channels depends on geometries:characteristic angle,mesh size,voidage and filament diameter.However,little emphasis has been placed on studying this property and its effect on the performance of the membrane module.This study focused on the influence of the curvature of spacer-filled channels on the pressure drop and shear stress distributions in spiral-wound membrane modules.Numerical results show that there are inherent changes in the hydrodynamic behavior of the spacer-filled channel due to curvature variations.The increase in curvature of the spacer-filled channel results in an increase in the difference in shear stress between the inner and outer walls.Intuitively conjecture from the simulated numerical results.the imbalance of shear stress between the inner and outer walls may result in an unequal deposition ot colloidal material between these two regions and could shorten the service time of the membrane.Microscopic understanding derived from the CFD analysis could improve the construction of a better spacer and module design,which could optimize the filament arrangement and the membrane module performance.

computational fluid dynamic curvature curved channel spacer spiral-wound membrane module

Yu-Ling Li Kuo-Lun Tung

R&D Center of Membrane.Technology and Dept.of Chemical Engineering,Chung Yuan University,Tai Wan

国内会议

2008亚太海水淡化与水再利用会议、亚洲科学理事会暨海洋科技与经济发展国际论坛

青岛

英文

330-343

2008-05-27(万方平台首次上网日期,不代表论文的发表时间)