Department of Physics of Complex Systems, Weizmann Institute of Science, 7610001, Rehovot, Israel.
Sci Rep. 2023 Jan 19;13(1):1064. doi: 10.1038/s41598-023-27918-4.
An addition of long-chain, flexible polymers strongly affects laminar and turbulent Newtonian flows. In laminar inertia-less viscoelastic channel flow, the supercritical elastic instability of non-normal eigenmodes of non-Hermitian equations at finite-size perturbations leads to chaotic flow. Then three chaotic flow regimes: transition, elastic turbulence (ET), and drag reduction (DR), accompanied by elastic waves, are observed and characterized. Here we show that independently of external perturbation strength and structure, chaotic flows above the instability onset in transition, ET, and DR flow regimes reveal similar scaling of flow properties, universal scaling of elastic wave speed with Weissenberg number, Wi, defined the degree of polymer stretching, and the coherent structure of velocity fluctuations, self-organized into cycling self-sustained process, synchronized by elastic waves. These properties persist over the entire channel length above the instability threshold. It means that only an absolute instability exists in inertia-less viscoelastic channel flow, whereas a convective instability, is absent. This unexpected discovery is in sharp contrast with Newtonian flows, where both convective and absolute instabilities are always present in open flows. It occurs due to differences in nonlinear terms in an elastic stress equation, where except for the advective term, two key terms describing polymer stretching along the channel length are present.
长链柔性聚合物的添加会强烈影响层流和湍流牛顿流。在层流无惯性粘弹通道流中,非厄米方程非正规本征模态的超临界弹性不稳定性在有限大小的微扰下导致混沌流。然后观察到并描述了三种混沌流动状态:过渡、弹性湍流(ET)和减阻(DR),伴随着弹性波。我们在这里表明,无论外部扰动强度和结构如何,在过渡、ET 和 DR 流动状态下的不稳定性起始点之上的混沌流动都显示出相似的流动特性标度、与 Weissenberg 数 Wi 定义的聚合物拉伸程度相关的弹性波速度的普适标度,以及速度波动的相干结构,这些结构自我组织成循环自维持过程,并通过弹性波进行同步。这些特性在不稳定性阈值以上的整个通道长度上都存在。这意味着在无惯性粘弹通道流中仅存在绝对不稳定性,而不存在对流不稳定性。这一意外发现与牛顿流形成鲜明对比,在牛顿流中,对流不稳定性和绝对不稳定性总是存在于开放流中。这是由于弹性应力方程中的非线性项的差异造成的,其中除了平流项外,还有两个关键项描述了聚合物沿通道长度的拉伸。