Eccles F J R, Read P L, Castrejón-Pita A A, Haine T W N
Atmospheric, Oceanic & Planetary Physics, Department of Physics, Clarendon Laboratory, University of Oxford, Parks Road, Oxford, OX1 3PU, United Kingdom.
Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Jan;79(1 Pt 2):015202. doi: 10.1103/PhysRevE.79.015202. Epub 2009 Jan 16.
Frequency entrainment and nonlinear synchronization are commonly observed between simple oscillatory systems, but their occurrence and behavior in continuum fluid systems are much less well understood. Motivated by possible applications to geophysical fluid systems, such as in atmospheric circulation and climate dynamics, we have carried out an experimental study of the interaction of fully developed baroclinic instability in a differentially heated, rotating fluid annulus with an externally imposed periodic modulation of the thermal boundary conditions. In quasiperiodic and chaotic amplitude-modulated traveling wave regimes, the results demonstrate a strong interaction between the natural periodic modulation of the wave amplitude and the externally imposed forcing. This leads to partial or complete phase synchronization. Synchronization effects were observed even with very weak amplitudes of forcing, and were found with both 1:1 and 1:2 frequency ratios between forcing and natural oscillations.
频率同步和非线性同步在简单振荡系统中普遍存在,但在连续流体系统中的出现情况和行为却鲜为人知。受地球物理流体系统潜在应用的启发,比如大气环流和气候动力学,我们对在旋转流体环带中充分发展的斜压不稳定性与热边界条件的外部周期性调制之间的相互作用进行了实验研究。在准周期和混沌调幅行波状态下,结果表明波幅的自然周期调制与外部强迫之间存在强烈相互作用。这导致了部分或完全的相位同步。即使强迫幅度非常小,也能观察到同步效应,并且在强迫与自然振荡的频率比为1:1和1:2时均能发现同步效应。