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Stability of fluid flow through deformable tubes and channels: An overview

机译:通过变形管和通道的流体流动的稳定性:概述

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The aim of this paper is to provide a systematic overview of the study of instabilities in flow past deformable solid surfaces, with particular emphasis on internal flows through tubes and channels. The subject is certainly more than five decades old, and arguably began with Kramer's pioneering experiments on drag reduction by compliant surfaces. This was immediately followed by the theoretical studies of Benjamin and Landhal in the early 1960s. Most earlier theoretical studies were focused on stability of external flows such as boundary layers, and used relatively simple wall models composed of spring-backed plates. There has been a resurgence in the field since the mid-1980s, and more attention was focused on internal flows through deformable tubes and channels. The wall deformation was described by both phenomenological spring-backed plate models and continuum linear viscoelastic solid models. All these studies predict several types of instabilities in flow past deformable surfaces. This paper will attempt to place the various theoretical results in perspective, and to classify the instabilities predicted by various studies. Recent studies have also emphasized the importance of using a frame-invariant constitutive model, such as the neo-Hookean model, for the solid deformation. Until recently, however, the field has been dominated by theoretical and numerical studies, with very little experimental observations to corroborate the theoretical predictions. Recent experiments in flow through deformable tubes and channels indeed show instability at Reynolds number much lower than their rigid counterparts, and the experimental observations are in qualitative agreement with some of the theoretical predictions. There have also been a few studies on the non-linear aspects of the instability using the weakly non-linear formulation to determine the nature of the bifurcation at the linear instability. A brief discussion on weakly nonlinear analyses is also provided in this paper.
机译:本文的目的是提供对流过可变形固体表面的不稳定性的研究的系统综述,特别着重于通过管和通道的内部流动。这个主题肯定有五十多年的历史了,可以说是克莱默关于顺应性表面减阻的开创性实验。随后紧接着是1960年代初期的本杰明(Benjamin)和兰达尔(Landhal)的理论研究。较早的理论研究集中在外部流动(例如边界层)的稳定性上,并使用了由弹簧支撑板组成的相对简单的壁模型。自1980年代中期以来,该领域开始复苏,更多的注意力集中在通过可变形管和通道的内部流动上。壁变形由现象学的弹簧支撑板模型和连续线性粘弹性实体模型描述。所有这些研究都预测了流过可变形表面的流动的几种不稳定性。本文将尝试以各种理论结果为视角,并对各种研究预测的不稳定性进行分类。最近的研究也强调了对于实体变形使用框架不变的本构模型(例如新霍克模型)的重要性。然而,直到最近,该领域仍被理论和数值研究所主导,很少有实验观察来证实理论预测。最近在可变形管和通道中流动的实验确实显示出在雷诺数下的不稳定性远低于其刚性对应物,并且实验观察在质量上与某些理论预测吻合。还使用弱非线性公式确定线性不稳定性处分叉的性质,从而对不稳定性的非线性方面进行了一些研究。本文还简要讨论了弱非线性分析。

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