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Local expansion concepts for detecting transport barriers in dynamical systems

机译:用于检测动力系统中的运输障碍的局部扩展概念

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In the last two decades, the mathematical analysis of material transport has received considerable interest in many scientific fields such as ocean dynamics and astrodynamics. In this contribution we focus on the numerical detection and approximation of transport barriers in dynamical systems. Starting from a set-oriented approximation of the dynamics we combine discrete concepts from graph theory with established geometric ideas from dynamical systems theory. We derive the global transport barriers by computing the local expansion properties of the system. For the demonstration of our results we consider two different systems. First we explore a simple flow map inspired by the dynamics of the global ocean. The second example is the planar circular restricted three body problem with Sun and Jupiter as primaries, which allows us to analyze particle transport in the solar system.
机译:在过去的二十年中,材料传输的数学分析在许多科学领域(如海洋动力学和天体动力学)中引起了极大的兴趣。在这一贡献中,我们专注于动力学系统中运输壁垒的数值检测和近似。从动力学的面向集合的近似出发,我们将图论中的离散概念与动力学系统中既定的几何思想结合起来。通过计算系统的局部扩展特性,我们得出了全球运输障碍。为了证明我们的结果,我们考虑了两种不同的系统。首先,我们探索一个受全球海洋动态启发的简单流程图。第二个例子是平面圆受限三体问题,其中太阳和木星为主要问题,这使我们能够分析太阳系中的粒子传输。

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