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从液体自由表面周期性冒出的气泡中的图案形成。

Pattern formation in bubbles emerging periodically from a liquid free surface.

作者信息

Yoshikawa H N, Mathis C, Maïssa P, Rousseaux G, Douady S

机构信息

Laboratoire J.-A. Dieudonné, UMR 6621 CNRS/Université de Nice-Sophia Antipolis, Parc Valrose, 06108 Nice Cedex 02, France.

出版信息

Eur Phys J E Soft Matter. 2010 Sep;33(1):11-8. doi: 10.1140/epje/i2010-10645-8. Epub 2010 Sep 17.

Abstract

Patterns formed by centimeter scale bubbles on the free surface of a viscous liquid are investigated in a cylindrical container. These bubbles emerge periodically at the surface and interact with each other in the central zone. Their radial emission, due to interaction and radial surface flow, leads to the formation of a variety of patterns. Different star-like and spiral patterns appear spontaneously by increasing the bubble emergence frequency. It is found that these patterns are due to a constant angular shift in the bubble emission direction. Measurements of this angular shift show a supercritical bifurcation accompanied by a transition from a pattern of two opposed straight arms to spiral patterns. By applying the tools and concepts from the study of leaf arrangement in botany (phyllotaxis), the recognized patterns and the mechanism of the pattern formation are discussed. Close similarities to the leaf arrangement are found in the behavior of the angular shift and the patterns. These findings suggest that the observed patterns are formed by a packing mechanism of successively appearing elements (bubbles), which is similar to that of the leaves at the earliest stage of phyllotaxis.

摘要

在一个圆柱形容器中,对粘性液体自由表面上厘米级气泡形成的图案进行了研究。这些气泡在表面周期性出现,并在中心区域相互作用。由于相互作用和径向表面流动,它们的径向发射导致了各种图案的形成。通过增加气泡出现频率,不同的星状和螺旋状图案会自发出现。研究发现,这些图案是由于气泡发射方向存在恒定的角位移。对角位移的测量显示出一种超临界分岔,伴随着从两个相对直臂图案到螺旋图案的转变。通过应用植物学中叶片排列研究(叶序学)的工具和概念,对识别出的图案及其形成机制进行了讨论。在角位移行为和图案中发现了与叶片排列的密切相似性。这些发现表明,观察到的图案是由相继出现的元素(气泡)的堆积机制形成的,这与叶序学最早阶段叶片的堆积机制相似。

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