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A Computational Model of Heat Loss and Water Condensation on the Gas-Side of Blood Oxygenators

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Journal Artif Organs
Date 2018 Aug 30
PMID 30155896
Citations 2
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Abstract

Clinical observation of condensation at the gas flow exit of blood oxygenators is a recurrent event during cardiopulmonary bypass. These devices consist of a bundle of hollow fibers made of a microporous membrane that allows the exchange of O and CO . The fibers carry a gas mixture inside (intraluminal flow), while blood flows externally around them (extraluminal flow). Although different studies described this effect in the past, the specific role of the different sections of the device requires further analysis, and the total condensation rate remains unquantified. In this study, a closer look is taken at the transition of gas between the oxygenation bundle and the external room air. A method is proposed to estimate the total condensate output, combining computational fluid dynamics (CFD) of thermal distribution and a simplified 1D model of water vapor saturation of gas. The influence of a number of different parameters is analyzed, regarding material properties, environmental conditions, and clinical use. Results show that condensation rate could vary in a 30-fold range within reasonably small variations of the different variables considered.

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SARS-CoV-2 Leakage From the Gas Outlet Port During Extracorporeal Membrane Oxygenation for COVID-19.

Ogawa T, Uemura T, Matsuda W, Sato M, Ishizuka K, Fukaya T ASAIO J. 2021; 67(5):511-516.

PMID: 33492852 PMC: 8078016. DOI: 10.1097/MAT.0000000000001402.


Water Condensation and Gas Exchange Correlation in Different Models and Fibers of Blood Oxygenators: "How Can We Improve Performance?".

Condello I J Extra Corpor Technol. 2020; 52(1):43-51.

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