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首页> 外文期刊>AIChE Journal >Limiting Flux in Microfiltration of Colloidal Suspensions by Focusing on Hydrodynamic Forces in Viscous Sublayer
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Limiting Flux in Microfiltration of Colloidal Suspensions by Focusing on Hydrodynamic Forces in Viscous Sublayer

机译:通过专注于粘性子层中的流体动力学的微滤微滤的助焊剂

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摘要

Cross-flow microfiltration tests were performed on colloidal suspensions under turbulence conditions. By changing the particle diameter, flow rate, and channel height in the membrane housing to measure limiting fluxes, the influence of each parameter on the limiting flux was assessed from the viewpoint of hydrodynamic forces exerted on a particle in the viscous sublayer. In analyzing all the data taken, the particle Reynolds number calculated from the limiting flux is proportional to the 1.5 power of that calculated from the flow rate at the boundary between the viscous sublayer and the intermediate layer. This fact indicates that the limiting flux can be determined in situations where the drag force exerted by the flux is balanced by the lift force in the viscous sublayer. (C) 2017 American Institute of Chemical Engineers
机译:在湍流条件下对胶体悬浮液进行交叉流量微滤试验。 通过改变膜壳体中的粒径,流速和通道高度来测量限制助熔剂,从粘性子层中施加在颗粒上施加在颗粒上的流体动力的观点来评估每个参数对限制通量的影响。 在分析所采取的所有数据时,根据限制通量计算的粒子雷诺数与从粘性子层和中间层之间的边界处的流速计算的1.5功率成比例。 该事实表明可以在粘性子层中的提升力平衡通过粘性子层中的升力平衡的情况下可以确定限制磁通。 (c)2017美国化学工程师研究所

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