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使用通用“管道”定律分析二维可塌陷通道中的流动。

Analysis of flow in a two-dimensional collapsible channel using universal "tube" law.

作者信息

Matsuzaki Y, Ikeda T, Kitagawa T, Sakata S

机构信息

Department of Aerospace Engineering, Nagoya University, Japan.

出版信息

J Biomech Eng. 1994 Nov;116(4):469-76. doi: 10.1115/1.2895798.

Abstract

This paper presents an extension of the previous analyses on the collapsible tube-flow problem using a simplified model based on a two-dimensional channel conveying a one-dimensional flow. The main objective of the paper is to exploit the static and dynamic behavior of the model, by comparing with available experimental data and examining the accuracy of calculated results obtained for different numerical resolutions. The main revision from the previous analyses is the incorporation of a universal "tube" law that is valid for a wide range of positive and negative transmural pressure. Most of the numerical results agree qualitatively with the experimental observations. Self-excited high-frequency oscillation with very small amplitude of the membrane wall is however, predicted to occur in a flow range where the slope of the pressure drop curve is positive. It is seen that the high-frequency oscillation is associated with the motion of the separation point of the flow.

摘要

本文提出了对先前关于可塌陷管流问题分析的扩展,使用基于二维通道输送一维流的简化模型。本文的主要目的是通过与现有实验数据进行比较,并检验不同数值分辨率下计算结果的准确性,来研究该模型的静态和动态行为。与先前分析的主要修订之处在于纳入了一个适用于广泛正负跨壁压力范围的通用“管”定律。大多数数值结果在定性上与实验观测结果一致。然而,预计在压降曲线斜率为正的流动范围内会出现膜壁振幅非常小的自激高频振荡。可以看出,高频振荡与流动分离点的运动有关。

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