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Three-dimensional forced-damped dynamical systems with rich dynamics: Bifurcations, chaos and unbounded solutions

机译:具有丰富动力学特性的三维强迫阻尼动力学系统:分叉,混沌和无穷大解

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摘要

We consider certain autonomous three-dimensional dynamical systems that can arise in mechanical and fluid-dynamical contexts. Extending a previous study in Craik and Okamoto (2002), to include linear forcing and damping, we find that the four-leaf structure discovered in that paper, and unbounded orbits, persist, but may now be accompanied by three distinct period-doubling cascades to chaos, and by orbits that approach stable equilibrium points. This rich structure is investigated both analytically and numerically, distinguishing three main cases determined by the damping and forcing parameter values. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们考虑了在机械和流体动力学环境中可能出现的某些自主三维动力学系统。扩展了Craik和Okamoto(2002)的先前研究,以包括线性强迫和阻尼,我们发现该论文中发现的四叶结构和无界轨道一直存在,但现在可能伴随着三个不同的倍频级联混沌,并通过接近稳定平衡点的轨道。对这种丰富的结构进行了分析和数值研究,区分了由阻尼和强迫参数值确定的三种主要情况。 (C)2015 Elsevier B.V.保留所有权利。

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