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Spatial velocity distributions in pulse-wave propagation based on fluid–structure interaction

机译:基于流固耦合的脉波传播空间速度分布

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摘要

In this paper, spatial velocity distributions in pulse-wave propagation based on a fluid–structure interaction model are presented. The investigation is performed using the assumption of laminar flow and a linear-elastic wall. The fluid–structure interaction scheme is constructed using the finite element method. The results show that velocity distributions embody an obvious time delay in an elastic tube model. Further, the fully developed flow is delayed and the velocity values are increased in comparison with a rigid tube model. The increase in the wall thickness makes the time delay between the velocity peaks of different sites smaller while the time delay between the velocity minima is unchanged. Similarly, the time delay between the velocity bottoms is more easily found when decreasing the internal radius. The model gives valid results for spatial velocity distributions, which provide important information for wave propagation.
机译:本文提出了一种基于流固耦合模型的脉波传播空间速度分布。使用层流和线性弹性壁的假设进行研究。流固耦合方案是采用有限元法构造的。结果表明,在弹性管模型中,速度分布表现出明显的时间延迟。此外,与刚性管模型相比,充分展开的流动被延迟并且速度值增加。壁厚的增加使得不同位置的速度峰值之间的时间延迟更小,而速度最小值之间的时间延迟不变。类似地,减小内半径时,更容易找到速度底部之间的时间延迟。该模型为空间速度分布提供了有效的结果,为波的传播提供了重要的信息。

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