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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Computational fluid dynamics study of the optimal design and operating conditions of the segmentation ring used in parallel segmented flow columns
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Computational fluid dynamics study of the optimal design and operating conditions of the segmentation ring used in parallel segmented flow columns

机译:平行节流塔中节流环的最佳设计和运行条件的计算流体力学研究

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摘要

We report on a numerical study wherein we modeled the influence of the segmentation ring used in the recently introduced parallel segmented flow concept. The study reconfirms that the parallel segmented flow concept can indeed improve separation performance of radially heterogeneous beds. It was however also found that the segmentation ring in itself introduces significant flow disturbances. Depending on its thickness and the fraction of the total flow rate going through the central opening, the ring itself can constitute a loss in volumetric variance (σv2) in the order of a few up to a few tens of μl2. Although the ideal flow-split ring would be infinitely thin, it was found that halving the current 0.62mm ring thickness used in literature to 0.31mm would already eliminate most of its negative effect. At the inlet, the optimal central flow rate fraction for a 0.62mm as well as a 0.31mm wide ring in a 4.6mm I.D. column lies in the range of 0.25-0.4. At the outlet, the optimal range is 0.15-0.4.
机译:我们报告了一项数值研究,其中我们对最近引入的并行分段流动概念中使用的分段环的影响进行了建模。研究证实,平行分段流动概念确实可以改善径向非均质床的分离性能。然而,还发现分段环本身引入了明显的流动扰动。根据其厚度和流经中央开口的总流量的比例,环本身可能构成体积变化量(σv2)的损失,数量级从几十个到几十个μl2不等。尽管理想的分流环将无限薄,但已发现将文献中使用的当前0.62mm环厚度减半至0.31mm已经消除了其大部分负面影响。在进口处,在4.6mm内径中,0.62mm以及0.31mm宽的环的最佳中心流速比。列位于0.25-0.4的范围内。在出口处,最佳范围是0.15-0.4。

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