Jung P, Wang J, Wackerbauer R, Showalter K
Department of Physics and Astronomy, Ohio University, Athens, Ohio 45701, USA.
Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics. 2000 Feb;61(2):2095-8. doi: 10.1103/physreve.61.2095.
We introduce a measure to quantify spatiotemporal turbulence in extended systems. It is based on the statistical analysis of a coherent structure decomposition of the evolving system. Applied to a cellular excitable medium and a reaction-diffusion model describing the oxidation of CO on Pt(100), it reveals power-law scaling of the size distribution of coherent space-time structures for the state of spiral turbulence. The coherent structure decomposition is also used to define an entropy measure, which sharply increases in these systems at the transition to turbulence.
我们引入一种方法来量化扩展系统中的时空湍流。它基于对演化系统的相干结构分解进行统计分析。应用于细胞可兴奋介质和描述Pt(100)上CO氧化的反应扩散模型时,它揭示了螺旋湍流状态下相干时空结构尺寸分布的幂律标度。相干结构分解还用于定义一种熵度量,在这些系统向湍流转变时,该熵度量会急剧增加。