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在一个具有可变占空比的周期性强迫作用下的差动加热旋转环实验中斜压波的相位同步。

Phase synchronization of baroclinic waves in a differentially heated rotating annulus experiment subject to periodic forcing with a variable duty cycle.

作者信息

Read P L, Morice-Atkinson X, Allen E J, Castrejón-Pita A A

机构信息

Department of Physics, University of Oxford, Oxford, United Kingdom.

Department of Engineering Science, University of Oxford, Oxford, United Kingdom.

出版信息

Chaos. 2017 Dec;27(12):127001. doi: 10.1063/1.5001817.

Abstract

A series of laboratory experiments in a thermally driven, rotating fluid annulus are presented that investigate the onset and characteristics of phase synchronization and frequency entrainment between the intrinsic, chaotic, oscillatory amplitude modulation of travelling baroclinic waves and a periodic modulation of the (axisymmetric) thermal boundary conditions, subject to time-dependent coupling. The time-dependence is in the form of a prescribed duty cycle in which the periodic forcing of the boundary conditions is applied for only a fraction δ of each oscillation. For the rest of the oscillation, the boundary conditions are held fixed. Two profiles of forcing were investigated that capture different parts of the sinusoidal variation and δ was varied over the range 0.1≤δ≤1. Reducing δ was found to act in a similar way to a reduction in a constant coupling coefficient in reducing the width of the interval in forcing frequency or period over which complete synchronization was observed (the "Arnol'd tongue") with respect to the detuning, although for the strongest pulse-like forcing profile some degree of synchronization was discernible even at δ=0.1. Complete phase synchronization was obtained within the Arnol'd tongue itself, although the strength of the amplitude modulation of the baroclinic wave was not significantly affected. These experiments demonstrate a possible mechanism for intraseasonal and/or interannual "teleconnections" within the climate system of the Earth and other planets that does not rely on Rossby wave propagation across the planet along great circles.

摘要

本文展示了一系列在热驱动旋转流体环空中进行的实验室实验,这些实验研究了斜压行波的固有混沌振荡幅度调制与(轴对称)热边界条件的周期性调制之间相位同步和频率锁定的起始及特征,实验考虑了随时间变化的耦合。时间依赖性表现为规定的占空比形式,即边界条件的周期性强迫仅在每个振荡的一小部分δ时间内施加。在振荡的其余时间里,边界条件保持固定。研究了两种强迫分布,它们捕捉了正弦变化的不同部分,并且δ在0.1≤δ≤1的范围内变化。发现减小δ的作用类似于减小常数耦合系数,即减小观察到完全同步(“阿诺尔德舌”)时强迫频率或周期的间隔宽度,尽管对于最强的脉冲状强迫分布,即使在δ = 0.1时也能观察到一定程度的同步。在阿诺尔德舌内部实现了完全相位同步,尽管斜压波幅度调制的强度没有受到显著影响。这些实验展示了一种可能的机制,用于解释地球和其他行星气候系统中的季节内和/或年际“遥相关”,该机制不依赖于罗斯贝波沿大圆在行星上的传播。

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