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Melting of a nonequilibrium vortex crystal in a fluid film with polymers: Elastic versus fluid turbulence

机译:用聚合物的流体膜中熔化非QoriBibibrium涡旋晶体:弹性与液体湍流

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摘要

We perform a direct numerical simulation of the forced, incompressible two-dimensional Navier-Stokes equation coupled with the FENE-P equations for the polymer-conformation tensor. The forcing is such that, without polymers and at low Reynolds numbers Re, the film attains a steady state that is a square lattice of vortices and antivortices.We find that, as we increase theWeissenberg numberWi, a sequence of nonequilibrium phase transitions transforms this lattice, first to spatially distorted, but temporally steady, crystals and then to a sequence of crystals that oscillate in time, periodically, at low Wi, and quasiperiodically, for slightly larger Wi. Finally, the system becomes disordered and displays spatiotemporal chaos and elastic turbulence. We then obtain the nonequilibrium phase diagram for this system, in the Wi-? plane, where ? ∝ Re, and show that (a) the boundary between the crystalline and turbulent phases has a complicated, fractal-type character and (b) the Okubo-Weiss parameter Λ provides us with a natural measure for characterizing the phases and transitions in this diagram.
机译:我们执行强制,不可压缩的二维Navier-Stokes方程的直接数值模拟,其与聚合物构象张量的FENE-P方程耦合。迫使是这样,没有聚合物和低雷诺数Re,薄膜达到稳定状态,这是涡流的方形格子和灭毒。我们发现,随着我们增加韦斯滕伯格编号Wi,一系列非正斑阶段转换变换了这一格子,首先在空间扭曲,但时间稳定,晶体,然后呈一系列晶体,其周期性地在低Wi和quaasiotiodally时振荡,用于稍大的Wi。最后,系统变得混乱,显示出时空混沌和弹性湍流。然后我们在Wi-获得该系统的非纤维阶段图,在WI-中?飞机,在哪里? αRe,并且表明(a)结晶和湍流阶段之间的边界具有复杂的,分形型特征和(b)okubo-weiss参数λ为我们提供了一种自然度量,用于表征该图中的阶段和转换。

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