Mancho Ana Maria, Riecke Hermann, Sain Fil
Centro de Astrobiologia, CSIC-INTA, Ctra. Ajalvir km. 4, 28850 Torrejon de Ardoz, Madrid, Spain.
Chaos. 2002 Sep;12(3):706-718. doi: 10.1063/1.1502585.
We consider surface-tension driven convection in a rotating fluid layer. For nearly insulating boundary conditions we derive a long-wave equation for the convection planform. Using a Galerkin method and direct numerical simulations we study the stability of the steady hexagonal patterns with respect to general side band instabilities. In the presence of rotation, steady and oscillatory instabilities are identified. One of them leads to stable, homogeneously oscillating hexagons. For sufficiently large rotation rates the stability balloon closes, rendering all steady hexagons unstable and leading to spatio-temporal chaos. (c) 2002 American Institute of Physics.
我们考虑旋转流体层中由表面张力驱动的对流。对于近似绝缘的边界条件,我们推导了对流平面形式的长波方程。使用伽辽金方法和直接数值模拟,我们研究了稳定六边形图案相对于一般边带不稳定性的稳定性。在存在旋转的情况下,识别出了稳态和振荡不稳定性。其中一种导致稳定的、均匀振荡的六边形。对于足够大的旋转速率,稳定性气球闭合,使所有稳态六边形不稳定并导致时空混沌。(c)2002美国物理研究所。