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用于血液氧合装置的中空纤维束的达西渗透率。

Darcy Permeability of Hollow Fiber Bundles Used in Blood Oxygenation Devices.

作者信息

Pacella Heather E, Eash Heidi J, Federspiel William J

机构信息

Medical Devices Laboratory, McGowan Institute for Regenerative Medicine University of Pittsburgh Pittsburgh, PA 15203 USA.

出版信息

J Memb Sci. 2011 Oct 15;382(1-2):238-242. doi: 10.1016/j.memsci.2011.08.012.

DOI:10.1016/j.memsci.2011.08.012
PMID:22927706
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3427009/
Abstract

Many industrial and biomedical devices (e.g. blood oxygenators and artificial lungs) use bundles of hollow fiber membranes for separation processes. Analyses of flow and mass transport within the shell-side of the fiber bundles most often model the bundle for simplicity as a packed bed or porous media, using a Darcy permeability coefficient estimated from the Blake-Kozeny equation to account for viscous drag from the fibers. In this study, we developed a simple method for measuring the Darcy permeability of hollow fiber membrane bundles and evaluated how well the Blake-Kozeny (BK) equation predicted the Darcy permeability for these bundles. Fiber bundles were fabricated from commercially available Celgard® ×30-240 fiber fabric (300 μm outer diameter fibers @ 35 and 54 fibers/inch) and from a fiber fabric with 193 μm fibers (61 fibers/inch). The fiber bundles were mounted to the bottom of an acrylic tube and Darcy permeability was determined by measuring the elapsed time for a column of glycerol solution to flow through a fiber bundle. The ratio of the measured Darcy permeability to that predicted from the BK equation varied from 1.09 to 0.56. A comprehensive literature review suggested a modified BK equation with the "constant" correlated to porosity. This modification improved the predictions of the BK equation, with the ratio of measured to predicted permeability varying from 1.13 to 0.84.

摘要

许多工业和生物医学设备(如血液氧合器和人工肺)在分离过程中使用中空纤维膜束。为了简化起见,对纤维束壳侧内的流动和传质分析通常将纤维束建模为填充床或多孔介质,使用根据布莱克 - 科曾尼方程估算的达西渗透系数来考虑纤维的粘性阻力。在本研究中,我们开发了一种测量中空纤维膜束达西渗透率的简单方法,并评估了布莱克 - 科曾尼(BK)方程对这些纤维束达西渗透率的预测效果。纤维束由市售的Celgard® ×30 - 240纤维织物(外径300μm的纤维,每英寸35和54根纤维)以及一种含193μm纤维(每英寸61根纤维)的纤维织物制成。将纤维束安装在丙烯酸管底部,通过测量一列甘油溶液流过纤维束的时间来确定达西渗透率。测量的达西渗透率与BK方程预测值的比值在1.09至0.56之间变化。全面的文献综述提出了一个修正的BK方程,其中“常数”与孔隙率相关。这种修正改进了BK方程的预测,测量渗透率与预测渗透率的比值在1.13至0.84之间变化。

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