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一种用于婴幼儿的轴流式心室辅助装置的数值设计与水力实验测试

Numerical design and experimental hydraulic testing of an axial flow ventricular assist device for infants and children.

作者信息

Throckmorton Amy L, Untaroiu Alexandrina, Allaire Paul E, Wood Houston G, Lim D Scott, McCulloch Michael A, Olsen Don B

机构信息

Mechanical Engineering Department, School of Engineering, Virginia Commonwealth University, Richmond, Virginia 23284, USA.

出版信息

ASAIO J. 2007 Nov-Dec;53(6):754-61. doi: 10.1097/MAT.0b013e31815581ea.

Abstract

Mechanical circulatory support options for infants and children are very limited in the United States. Existing circulatory support systems have proven successful for short-term pediatric assist, but are not completely successful as a bridge-to-transplant or bridge-to-recovery. To address this substantial need for alternative pediatric mechanical assist, we are developing a novel, magnetically levitated, axial flow pediatric ventricular assist device (PVAD) intended for longer-term ventricular support. Three major numerical design and optimization phases have been completed. A prototype was built based on the latest numerical design (PVAD3) and hydraulically tested in a flow loop. The plastic PVAD prototype delivered 0.5-4 lpm, generating pressure rises of 50-115 mm Hg for operating speeds of 6,000-9,000 rpm. The experimental testing data and the numerical predictions correlated well. The error between these sets of data was found to be generally 7.8% with a maximum deviation of 24% at higher flow rates. The axial fluid forces for the numerical simulations ranged from 0.5 to 1 N and deviated from the experimental results by generally 8.5% with a maximum deviation of 12% at higher flow rates. These hydraulic results demonstrate the excellent performance of the PVAD3 and illustrate the achievement of the design objectives.

摘要

在美国,针对婴幼儿和儿童的机械循环支持选择非常有限。现有的循环支持系统已被证明在短期儿科辅助方面取得了成功,但作为移植桥梁或恢复桥梁并不完全成功。为了满足对替代儿科机械辅助的这一巨大需求,我们正在开发一种新型的、磁悬浮的、轴流式儿科心室辅助装置(PVAD),旨在提供长期的心室支持。已经完成了三个主要的数值设计和优化阶段。基于最新的数值设计(PVAD3)制造了一个原型,并在流动回路中进行了液压测试。塑料PVAD原型的流量为0.5 - 4升/分钟,在6000 - 9000转/分钟的运行速度下产生50 - 115毫米汞柱的压力升高。实验测试数据与数值预测结果相关性良好。这两组数据之间的误差通常为7.8%,在较高流量时最大偏差为24%。数值模拟的轴向流体力范围为0.5至1牛,与实验结果的偏差通常为8.5%,在较高流量时最大偏差为12%。这些液压测试结果证明了PVAD3的优异性能,并说明了设计目标的实现。

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