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Computational fluid flow and mass transfer of a functionally integrated pediatric pump-oxygenator configuration.

机译:功能集成的小儿泵-氧合器配置的计算流体流量和传质。

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摘要

Ension, Inc., under a contract with the National Heart, Lung, and Blood Institute (HHSN268200448189C), is currently developing a pediatric cardiopulmonary assist system (pCAS). This work reports on the utilization of computational fluid dynamics to predict the performance of the first of two device iterations before physical fabrication and in vitro testing. Fluent, Inc. was consulted to assist with key technical aspects of model development. Activities included porous model development and verification, generation of predictive fluid velocity fields, and incorporation of postprocessing subroutines for calculating oxygenation, decarbonation, and hemolytic blood damage. Experimental validation was conducted using bovine blood and good quantitative agreement with computational predictions was demonstrated. The success of this work suggests that the generated models and subroutines can be used as a practical tool for design and analysis of subsequent candidate pCAS design configurations.
机译:根据与国家心脏,肺和血液研究所(HHSN268200448189C)签订的合同,Ension公司目前正在开发一种儿科心肺辅助系统(pCAS)。这项工作报告了在物理制造和体外测试之前,利用计算流体动力学来预测两个设备迭代中的第一个迭代的性能。咨询了Fluent,Inc.以协助模型开发的关键技术方面。活动包括多孔模型的开发和验证,预测流体速度场的生成,以及用于计算氧合,脱碳和溶血性血液损害的后处理子例程的合并。使用牛血进行了实验验证,并证明了与计算预测的良好定量一致性。这项工作的成功表明,生成的模型和子例程可以用作设计和分析后续候选pCAS设计配置的实用工具。

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