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Finite-time Lyapunov exponents in the instantaneous limit and material transport

机译:有限时间Lyapunov指数在瞬时限制和材料运输中

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Lagrangian techniques, such as the finite-time Lyapunov exponent (FTLE) and hyperbolic Lagrangian coherent structures, have become popular tools for analyzing unsteady fluid flows. These techniques identify regions where particles transported by a flow will converge to and diverge from over a finite-time interval, even in a divergence-free flow. Lagrangian analyses, however, are time consuming and computationally expensive, hence unsuitable for quickly assessing short-term material transport. A recently developed method called Objective Eulerian Coherent Structures (OECSs) (Serra and Haller in Chaos Interdiscip J Nonlinear Sci 26(5):053110, 2016) rigorously connected Eulerian quantities to short-term Lagrangian transport. This Eulerian method is faster and less expensive to compute than its Lagrangian counterparts, and needs only a single snapshot of a velocity field. Along the same line, here we define the instantaneous Lyapunov Exponent, the instantaneous counterpart of the FTLE, and connect the Taylor series expansion of the right Cauchy-Green deformation tensor to the infinitesimal integration time limit of the FTLE. We illustrate our results on geophysical fluid flows from numerical models as well as analytical flows, and demonstrate the efficacy of attracting and repelling instantaneous Lyapunov exponent structures in predicting short-term material transport.
机译:拉格朗日技术,如有限时间的Lyapunov指数(FTLE)和双曲拉格朗日相干结构,已成为分析非稳态流体流动的流行工具。这些技术识别由流量传输的颗粒的区域将在有限时间间隔中收敛到并分歧,即使在无分歧流中也是如此。然而,拉格朗日分析是耗时和计算昂贵的,因此不适合快速评估短期材料运输。最近开发的方法称为物镜欧洲相干结构(OECSS)(Chaos Interdiccip J非线性SCI 26(5)中的Serra和Haller)(5):053110,2016)将欧拉数量严格地连接到短期拉格朗日运输。计算比其拉格朗日对应物的速度更快,更便宜,并且仅需要一个速度场的单一快照。沿着同一条线,我们在这里定义了瞬间的Lyapunov指数,专题原文的瞬时对应物,并将泰勒序列扩展的右Cauchy-Green变形张量连接到了专题上的无限的整合时间限制。我们说明了我们从数值模型的地球物理流体流动以及分析流动的结果,并证明了吸引和排斥瞬时Lyapunov指数结构在预测短期材料运输中的功效。

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