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Persistent structures in a three-dimensional dynamical system with flowing and non-flowing regions

机译:具有流动和非流动区域的三维动力学系统中的持久结构

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摘要

Mixing of fluids and mixing of solids are both relatively mature fields. In contrast, mixing in systems where flowing and non-flowing regions coexist remains largely unexplored and little understood. Here we report remarkably persistent mixing and non-mixing regions in a three-dimensional dynamical system where randomness is expected. A spherical shell half-filled with dry non-cohesive particles and periodically rotated about two horizontal axes generates complex structures that vary non-trivially with the rotation angles. They result from the interplay between fluid-like mixing by stretching-and-folding, and solids mixing by cutting-and-shuffling. In the experiments, larger non-mixing regions predicted by a cutting-and-shuffling model alone can persist for a range of protocols despite the presence of stretching-and-folding flows and particle-collision-driven diffusion. By uncovering the synergy of simultaneous fluid and solid mixing, we point the way to a more fundamental understanding of advection driven mixing in materials with coexisting flowing and non-flowing regions.
机译:流体的混合和固体的混合都是相对成熟的领域。相反,在流动区域和非流动区域共存的系统中的混合仍然很大程度上未被探索并且很少被理解。在这里,我们报告了在预期随机性的三维动力学系统中的显着持久混合和非混合区域。球形壳半填充了干燥的非粘性颗粒,并围绕两个水平轴周期性旋转,生成的复杂结构随旋转角度的变化不大。它们是通过拉伸和折叠的类流体混合与通过剪切和混洗的固体混合之间相互作用的结果。在实验中,尽管存在拉伸和折叠流动以及颗粒碰撞驱动的扩散,但仅通过剪切和改组模型预测的较大的非混合区域就可以在一系列协议中持续存在。通过揭示流体和固体同时混合的协同作用,我们指出了对具有流动和非流动区域并存的材料中对流驱动混合的更基本的理解。

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