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Numerical Study of Laminar Flow and Mass Transfer for In-Line Spacer-Filled Passages

机译:在线间隔填充通道的层流量和传质的数值研究

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摘要

Performance calculations for laminar fluid flow and mass transfer are presented for a spacer-filled passage containing cylindrical spacers configured in an inline-square arrangement, typical of those employed in the process industries. Numerical calculations are performed for fully-developed flow, based on stream-wise periodic conditions for a `unit cell' and compared with those obtained for developing regime in a row of 10 such units. The method is validated for an empty passage (i.e. a plane duct). Results are presented for the normalized mass transfer coefficient and driving force, as function of mean flow Reynolds number, and also the wall mass flux, or blowing parameter. Both constant and variable wall velocities were considered, the latter being typical of those found in many practical membrane assemblies.
机译:对于包含在整体布置的圆柱形间隔物,含有圆柱形间隔物的间隔填充通道,提供了圆柱形间隔物的性能计算,该间隔件被配置为方向方案,其典型的过程行业中采用的那些。基于“单元电池”的流明智的周期性条件,对全发达的流动进行数值计算,并与用于10个这样的单元的行中的发展方案获得的那些相比。该方法被验证为空通道(即平面管道)。结果显示为归一化的质量传递系数和驱动力,作为平均流雷诺数,以及壁质量通量或吹吹参数。考虑了恒定和可变的壁速度,后者是在许多实用膜组件中发现的那些。

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