固体燃烧前沿运动中分岔和混沌的拓扑特征。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Zhuopu Wang, Yin Huang, Kairui Yu, Bingning Jin, Yan Ba, Wen Ao, Yuanzhe Liu, Peijin Liu
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引用次数: 0

摘要

我们研究了描述固体推进剂非稳态燃烧的偏微分方程分岔和混沌的几何特征。在表面非稳态燃烧和固体内部扩散的相互作用驱动下,燃烧前沿的运动可以是稳定的、谐波振荡的,并通过一系列分岔变得更加复杂和混乱。我们研究了自由振荡和强迫振荡的动态。在自由振荡中,通过改变与固体性质相关的参数,我们发现了燃烧的内在不稳定性。我们发现了典型的周期加倍到混沌的路线,并通过定性和定量的普遍性进行了验证。在强迫振荡的情况下,系统受到外部压力激励的扰动,导致分岔图更加复杂,动态更加丰富。我们集中研究了周期轨道的拓扑特征,发现了周期加倍分岔之外的两种新的分岔类型。在本研究中,我们从自由边界偏微分方程支配的无穷维动力系统中提取了一系列微妙的拓扑结构。我们发现这些结果为全尺寸电机实验数据中的周期-3 轨道提供了解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The topological characteristics of the bifurcation and chaos in the motion of combustion fronts in solids.

We investigate the geometric features in the bifurcation and chaos of a partial differential equation describing the unsteady combustion of solid propellants. Driven by the interaction of the unsteady combustion at the surface and the diffusion inside solids, the motion of the combustion fronts can be steady, harmonically oscillatory, and become more complicated to chaos through a series of bifurcations. We examined the dynamics in both free and forced oscillations. In the free oscillation, by varying a parameter related to the solid property, the intrinsic instability of the combustion is discovered. We find the typical period-doubling to chaos route and verify it via both qualitative and quantitative universalities. In the forced oscillation case, the system is perturbed by an external pressure excitation, leading to a more complicated bifurcation diagram with richer dynamics. Concentrating on the topological characteristics of the periodic orbits, we discover two new types of bifurcation other than the period-doubling bifurcation. In present work, we extract a series subtle topological structures from an infinite-dimensional dynamical systems governed by a partial differential equation with free boundary. We find the results provide an explanation for the period-3 orbits in the experimental data of a full-scale motor.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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