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二维拉格朗日流拓扑从可积状态到混沌状态的全局哈密顿量演化的直接实验可视化。

Direct experimental visualization of the global Hamiltonian progression of two-dimensional Lagrangian flow topologies from integrable to chaotic state.

作者信息

Baskan O, Speetjens M F M, Metcalfe G, Clercx H J H

机构信息

Fluid Dynamics Laboratory, Department of Applied Physics, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.

Energy Technology Laboratory, Department of Mechanical Engineering, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.

出版信息

Chaos. 2015 Oct;25(10):103106. doi: 10.1063/1.4930837.

Abstract

Countless theoretical/numerical studies on transport and mixing in two-dimensional (2D) unsteady flows lean on the assumption that Hamiltonian mechanisms govern the Lagrangian dynamics of passive tracers. However, experimental studies specifically investigating said mechanisms are rare. Moreover, they typically concern local behavior in specific states (usually far away from the integrable state) and generally expose this indirectly by dye visualization. Laboratory experiments explicitly addressing the global Hamiltonian progression of the Lagrangian flow topology entirely from integrable to chaotic state, i.e., the fundamental route to efficient transport by chaotic advection, appear non-existent. This motivates our study on experimental visualization of this progression by direct measurement of Poincaré sections of passive tracer particles in a representative 2D time-periodic flow. This admits (i) accurate replication of the experimental initial conditions, facilitating true one-to-one comparison of simulated and measured behavior, and (ii) direct experimental investigation of the ensuing Lagrangian dynamics. The analysis reveals a close agreement between computations and observations and thus experimentally validates the full global Hamiltonian progression at a great level of detail.

摘要

关于二维非定常流中输运和混合的无数理论/数值研究都基于哈密顿机制控制被动示踪剂拉格朗日动力学这一假设。然而,专门研究上述机制的实验研究却很少。此外,这些研究通常关注特定状态下的局部行为(通常远离可积状态),并且一般通过染料可视化间接揭示这一点。完全从可积状态到混沌状态明确解决拉格朗日流拓扑的全局哈密顿进展的实验室实验,即通过混沌平流实现高效输运的基本途径,似乎并不存在。这促使我们通过直接测量代表性二维时间周期流中被动示踪剂粒子的庞加莱截面来对这一进展进行实验可视化研究。这允许(i)精确复制实验初始条件,便于对模拟行为和测量行为进行真正的一对一比较,以及(ii)对随之而来的拉格朗日动力学进行直接实验研究。分析表明计算结果与观测结果高度一致,从而在很大程度上详细地通过实验验证了完整的全局哈密顿进展。

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