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小型肺内动脉肺模型。气体传输的数学建模。

Small intrapulmonary artery lung prototypes. Mathematical modeling of gas transfer.

作者信息

Baskaran H, Nodelman V, Ultman J S, Richard R B, Panol G, High K M, Snider M T

机构信息

Department of Chemical Engineering, Pennsylvania State University, University Park 16802, USA.

出版信息

ASAIO J. 1996 Sep-Oct;42(5):M597-603. doi: 10.1097/00002480-199609000-00058.

Abstract

Two diffusion models have been developed to analyze gas transfer data previously measured in an intravascular artificial lung consisting of a central gas supply catheter from which are tethered a large number of blind-ended microporous fibers of equal length. A convective-diffusion model (CD) describes the countercurrent transfer of a binary gas pair when gas is supplied at constant pressure conditions, and a well mixed (WM) cycled pressure model predicts transfer when the gas supply pressure is time cycled between compression and vacuum conditions. Regression of gas to gas and liquid to gas excretion data with the CD model resulted in estimates of the liquid phase mass transfer coefficient kAI. Because these values were intermediate between the kAI expected for flow parallel to a cylinder and for flow normal to a cylinder, gas transfer was influenced by both the tethered region of the fiber that was nearly perpendicular to the axis of the test section and the free end of the fiber that rested along the wall of the test section. With a time cycled gas supply pressure, the enhanced carbon dioxide and oxygen excretion predicted by the WM model was similar to the data, but a loss in transfer efficiency with fiber length was not accounted for by the theory.

摘要

已开发出两种扩散模型来分析先前在血管内人工肺中测量的气体传输数据,该人工肺由一根中央气体供应导管组成,从该导管上系有大量等长的盲端微孔纤维。对流扩散模型(CD)描述了在恒定压力条件下供应气体时二元气体对的逆流传输,而充分混合(WM)循环压力模型预测了气体供应压力在压缩和真空条件之间随时间循环时的传输情况。用CD模型对气体与气体以及液体与气体排泄数据进行回归,得出了液相传质系数kAI的估计值。由于这些值介于平行于圆柱体流动和垂直于圆柱体流动所预期的kAI之间,气体传输受到几乎垂直于测试段轴线的纤维束缚区域以及沿测试段壁放置的纤维自由端的影响。在气体供应压力随时间循环的情况下,WM模型预测的二氧化碳和氧气排泄增强与数据相似,但该理论未解释传输效率随纤维长度的损失。

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