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Darcy Permeability of Hollow Fiber Membrane Bundles Made from Membrana Polymethylpentene Fibers Used in Respiratory Assist Devices

机译:呼吸辅助装置用膜聚甲基戊烯纤维制成的中空纤维膜束的达西渗透率

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Hollow fiber membranes (HFMs) are used in blood oxygenators for cardiopulmonary bypass or in next generation artificial lungs. Flow analyses of these devices is typically done using computational fluid dynamics (CFD) modeling HFM bundles as porous media, using a Darcy permeability coefficient estimated from the Blake-Kozeny (BK) equation to account for viscous drag from fibers. We recently published how well this approach can predict Darcy permeability for fiber bundles made from polypropylene HFMs, showing the prediction can be significantly improved using an experimentally derived correlation between the BK constant (A) and bundle porosity (epsilon). In this study, we assessed how well our correlation for A worked for predicting the Darcy permeability of fiber bundles made from Membrana polymethylpentene (PMP) HFMs, which are increasingly being used clinically. Swatches in the porosity range of 0.4 to 0.8 were assessed in which sheets of fiber were stacked in parallel, perpendicular, and angled configurations. Our previously published correlation predicted Darcy within +/- 8%. A new correlation based on current and past measured permeability was determined: A = 497 epsilon - 103; using this correlation measured Darcy permeability was within +/- 6%. This correlation varied from 8% to -3.5% of our prior correlation over the tested porosity range.
机译:中空纤维膜(HFM)用于血液氧合器,用于体外循环或下一代人工肺。这些设备的流量分析通常使用将HFM束作为多孔介质建模的计算流体力学(CFD)进行,并使用从Blake-Kozeny(BK)方程估算的达西渗透系数来解决纤维的粘滞阻力。我们最近发表了这种方法对聚丙烯HFM制成的纤维束的达西渗透率的预测能力,表明使用BK常数(A)和束孔孔隙率(epsilon)之间的实验推导相关性,可以大大改善该预测。在这项研究中,我们评估了与A的相关性在预测由膜聚甲基戊烯(PMP)HFM制成的纤维束的达西渗透率方面的效果,该膜在临床上正在越来越多地使用。评估孔隙率为0.4到0.8的色板,其中纤维片以平行,垂直和成角度的结构堆叠。我们先前发布的相关性预测达西在+/- 8%内。确定了基于当前和过去测得的渗透率的新相关性:A = 497 epsilon-103;利用这种相关性,测得的达西渗透率在+/- 6%以内。在测试的孔隙率范围内,这种相关性从先前相关性的8%到-3.5%不等。

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