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A CFD study of unsteady flow in narrow spacer-filled channels for spiral-wound membrane modules

机译:螺旋缠绕膜模块窄间隔件通道不稳定流动的CFD研究

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In spiral-wound membrane modules, spacers are used to enhance wall shear stress and to promote eddy mixing, thereby reducing wall concentration and fouling. Insights into the effect of spacer filaments on flow patterns in narrow channels were obtained using a computational fluid dynamics (CFD) code. The flow patterns were visualized for different filament configurations incorporating variations in mesh length, filament diameter and for channel Reynolds numbers up to 1000. The simulated flow patterns revealed the dependence of the formation of recirculation regions on the filament configuration, mesh length, filament diameter and the Reynolds number. When the channel Reynolds number is increased above 300, the flow becomes super-critical showing time-dependent movements for a filament located in the center of a narrow channel; and when the channel Reynolds number is increased above 500, the flow becomes super-critical for a filament adjacent to the membrane wall. For multiple filament configurations, flow transition can occur at channel Reynolds numbers as low as 80 for the submerged spacer at a very small mesh length (l_m/h_(ch) = 1) and at a slightly larger Reynolds number at a larger mesh length (l_m/h_(ch) = 4). The transition occurs above Re_(ch) of 300 for the cavity spacer (l-m/h_(ch) = 4) and above Re_(ch) of 400 for the zigzag spacer (l_m/h_(ch) = 4).
机译:在螺旋缠绕的膜模块中,垫片用于增强壁剪切应力并促进涡流混合,从而降低壁浓度和污垢。利用计算流体动力学(CFD)代码,获得了对窄通道中的流动模式的效果的洞察。流动模式被视为不同的丝构型,其包含网格长度,灯丝直径和通道雷诺数的不同丝构型高达1000的变化。模拟的流动模式显示了在长丝配置,网格长度,长丝直径和灯丝和灯丝直径和雷诺数。当频道雷诺数增加300时,流程变得超级关键,示出了位于窄通道中心的长丝的时间依赖运动;并且当通道雷诺数高于500时,流动对与膜壁相邻的长丝变得超级关键。对于多个灯丝配置,流动转变可以在非常小的网格长度(L_M / H_(CH)= 1)处的浸没间隔物的频道雷诺数,并且在较大网格长度下略大雷诺数( l_m / h_(ch)= 4)。对于腔间隔物(L-M / H_(CH)= 4)的腔间隔(L-M / H_(CH)= 4)和高于Z字形间隔(L_M / H_(CH)= 4)的RE_(CH)的RE_(CH)的转换发生。

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