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在离心式血泵上对牛顿流体和非牛顿流体进行实验性能比较。

An experimental performance comparison of Newtonian and non-Newtonian fluids on a centrifugal blood pump.

机构信息

Mechanical and Metal Technologies Department, Technical Sciences Vocational School, Konya Technical University, Konya, Turkey.

Mechanical Engineering Department, Faculty of Engineering and Natural Science, Konya Technical University, Konya, Turkey.

出版信息

Proc Inst Mech Eng H. 2022 Mar;236(3):399-405. doi: 10.1177/09544119211057626. Epub 2022 Jan 11.

Abstract

The use of substitute fluid with similar rheological properties instead of blood is important due to ethical concerns and high blood volume consumption in pump performance test before clinical applications. The performance of a centrifugal blood pump with hydrodynamic journal bearing is experimentally tested using Newtonian 40% aqueous glycerin solution (GS) and non-Newtonian aqueous xanthan gum solution of 600 ppm (XGS) as working fluids. Experiments are performed at four different rotational speeds which are 2700, 3000, 3300, and 3600 rpm; experiments using GS reach between 8.5% and 37.2% higher head curve than experiments using the XGS for every rotational speed. It was observed that as the rotational speed and flow rate increase, the head curve difference between GS and XGS decreases. This result can be attributed to the friction reduction effect when using XGS in experiments at high rotation speed and high flow rate. Moreover, due to different fluid viscosities, differences in hydraulic efficiency were observed for both fluids. This study reveals that the use of Newtonian fluids as working fluids is not sufficient to determine the actual performance of a blood pump, and the performance effects of non-Newtonian fluids are remarkably important in pump performance optimizations.

摘要

由于伦理问题和临床应用前泵性能测试中血液体积消耗量大,使用具有相似流变性能的替代液代替血液非常重要。使用牛顿型 40%水甘油溶液(GS)和 600ppm 非牛顿型水黄原胶溶液(XGS)作为工作液,对具有液动滑靴轴承的离心泵进行了实验测试。在四个不同的转速下进行了实验,转速分别为 2700、3000、3300 和 3600rpm;对于每个转速,使用 GS 的实验比使用 XGS 的实验的扬程曲线高 8.5%至 37.2%。观察到,随着转速和流量的增加,GS 和 XGS 之间的扬程曲线差异减小。这一结果可以归因于在高转速和高流量下使用 XGS 进行实验时的摩擦降低效应。此外,由于两种流体的粘度不同,两种流体的水力效率也存在差异。本研究表明,使用牛顿型流体作为工作液不足以确定血液泵的实际性能,非牛顿型流体的性能影响在泵性能优化中非常重要。

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