Vorotnikov K, Kovaleva M, Starosvetsky Y
University of Grenoble -- Alpes, CMRS, Grenoble IMP, LJK, 38000 Grenoble, France.
Institute of Chemical Physics, Russian Academy of Sciences, Moscow 119991, Russia.
Philos Trans A Math Phys Eng Sci. 2018 Aug 28;376(2127). doi: 10.1098/rsta.2017.0134.
In the present paper, we give a selective review of some very recent works concerning the non-stationary regimes emerging in various one- and two-dimensional models incorporating internal rotators. In one-dimensional models, these regimes are characterized by the intense energy transfer from the outer element, subjected to initial or harmonic excitation, to the internal rotator. As for the two-dimensional models (incorporating internal rotators), we will mainly focus on the two special dynamical states, namely a state of the near-complete energy transfer from longitudinal to lateral vibrations of the outer element as well as the state of a permanent, unidirectional energy locking with mild, spatial energy exchanges. In this review, we will discuss the recent theoretical and experimental advancements in the study of essentially nonlinear mechanisms governing the formation and bifurcations of the regimes of intense energy transfer. The present review is composed of two parts. The first part will be mainly devoted to the emergence of resonant energy transfer states in one-dimensional models incorporating internal rotators, while the second part will be mainly concerned with the manifestation of various energy transfer states in two-dimensional ones.This article is part of the theme issue 'Nonlinear energy transfer in dynamical and acoustical systems'.
在本文中,我们对一些近期的研究工作进行了选择性综述,这些工作涉及各种包含内部转子的一维和二维模型中出现的非定常状态。在一维模型中,这些状态的特征是,受到初始激励或谐波激励的外部元件向内部转子进行强烈的能量转移。至于二维模型(包含内部转子),我们将主要关注两种特殊的动力学状态,即外部元件从纵向振动到横向振动的近乎完全能量转移状态,以及具有温和空间能量交换的永久单向能量锁定状态。在本综述中,我们将讨论近期在研究控制强烈能量转移状态的形成和分岔的本质非线性机制方面的理论和实验进展。本综述由两部分组成。第一部分将主要致力于研究包含内部转子的一维模型中共振能量转移状态的出现,而第二部分将主要关注二维模型中各种能量转移状态的表现。本文是主题为“动态和声学系统中的非线性能量转移”特刊的一部分。