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首页> 外文期刊>International Journal of Heat and Mass Transfer >Heat and mass transfer in a randomly packed hollow fiber membrane module: A fractal model approach
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Heat and mass transfer in a randomly packed hollow fiber membrane module: A fractal model approach

机译:随机堆积的中空纤维膜组件中的传热和传质:分形模型方法

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摘要

Hollow fiber membrane modules are widely used in various industries. The disordered nature of hollow fiber distributions in the module exhibits the existence of a fractal structure formed by the voids between the fibers. The area fractal dimension of the voids on the module cross section is obtained. Then the shell side flow distribution and convective heat and mass transfer are investigated based on the fractal theory developed. An experimental work where an air flow in the shell side is humidified by a water flow in the tube side is performed to validate the model. It is found that the model predicts the flow distribution and the heat and mass transfer deteriorations well with local data for a triangular array. With the model, friction factor and Sherwood number deteriorations which take into account of the degree of irregularity, in terms of fractal dimension, are analyzed. The results show that the higher the packing density is, the less the fractal dimension is, and the less the non-uniformity of the flow distribution is. The Sherwood and Nusselt numbers of a randomly distributed fiber module are only 1-5% of a uniformly spaced tube array. Correlations are proposed for the estimation of friction factor and Sherwood numbers considering the degree of irregularity. The predictions are also compared to the available mass transfer correlations in the literature.
机译:中空纤维膜组件广泛用于各个行业。中空纤维分布在组件中的无序性质表现出存在由纤维之间的空隙形成的分形结构。获得了模块横截面上的空隙的面积分形维数。在此基础上,基于分形理论,研究了壳侧流的分布,对流传热与传质。进行了实验工作,其中壳侧的空气流被管侧的水流加湿,以验证模型。发现该模型利用三角形阵列的局部数据可以很好地预测流量分布以及传热和传质的恶化。使用该模型,分析了在分形维数方面考虑到不规则程度的摩擦系数和舍伍德数变差。结果表明,堆积密度越高,分形维数越小,流动分布的不均匀性越小。随机分布的光纤模块的Sherwood和Nusselt数仅为均匀分布的管阵列的1-5%。考虑到不规则度,提出了相关性用于摩擦系数和舍伍德数的估计。还将预测结果与文献中可用的传质相关性进行比较。

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