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首页> 外文期刊>The Journal of extra-corporeal technology >Development of a new arterial-line filter design using computational fluid dynamics analysis.
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Development of a new arterial-line filter design using computational fluid dynamics analysis.

机译:使用计算流体动力学分析开发新的动脉管路过滤器设计。

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Arterial-line filters used during extracorporeal circulation continue to rely on the physical properties of a wetted micropore and reductions in blood flow velocity to affect air separation from the circulating blood volume. Although problems associated with air embolism during cardiac surgery persist, a number of investigators have concluded that further improvements in filtration are needed to enhance air removal during cardiopulmonary bypass procedures. This article reviews theoretical principles of micropore filter technology and outlines the development of a new arterial-line filter concept using computational fluid dynamics analysis. Manufacturer-supplied data of a micropore screen and experimental results taken from an ex vivo test circuit were used to define the inputs needed for numerical modeling of a new filter design. Flow patterns, pressure distributions, and velocity profiles predicted with computational fluid dynamics software were used to inform decisions on model refinements and how to achieve initial design goals of < or = 225 mL prime volume and < or = 500 cm2 of screen surface area. Predictions for optimal model geometry included a screen angle of 56 degrees from the horizontal plane with a total surface area of 293.9 cm2 and a priming volume of 192.4 mL. This article describes in brief the developmental process used to advance a new filter design and supports the value of numerical modeling in this undertaking.
机译:体外循环期间使用的动脉过滤器继续依靠湿微孔的物理特性以及血流速度的降低来影响空气与循环血液的分离。尽管与心脏手术中的空气栓塞有关的问题仍然存在,但许多研究人员得出结论,需要进一步改善过滤,以增强体外循环过程中的空气去除。本文回顾了微孔过滤器技术的理论原理,并概述了使用计算流体动力学分析的新型动脉管路过滤器概念的发展。制造商提供的微孔筛网数据和从体外测试电路获得的实验结果用于定义新过滤器设计数值建模所需的输入。用计算流体动力学软件预测的流动模式,压力分布和速度曲线可用于进行模型优化以及如何实现初始设计目标(≤225 mL初始体积和≤500 cm2屏幕表面积)的决策。最佳模型几何的预测包括与水平面成56度的筛网角,总表面积为293.9 cm2,灌注体积为192.4 mL。本文简要介绍了用于推进新的滤波器设计的开发过程,并在此过程中支持了数值建模的价值。

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