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Nonlinear stratospheric variability: multifractal de-trended fluctuation analysis and singularity spectra

机译:非线性平流层变化:多重分形趋势分解分析和奇异谱

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摘要

Characterizing the stratosphere as a turbulent system, temporal fluctuations often show different correlations for different time scales as well as intermittent behaviour that cannot be captured by a single scaling exponent. In this study, the different scaling laws in the long-term stratospheric variability are studied using multifractal de-trended fluctuation analysis (MF-DFA). The analysis is performed comparing four re-analysis products and different realizations of an idealized numerical model, isolating the role of topographic forcing and seasonal variability, as well as the absence of climate teleconnections and small-scale forcing. The Northern Hemisphere (NH) shows a transition of scaling exponents for time scales shorter than about 1 year, for which the variability is multifractal and scales in time with a power law corresponding to a red spectrum, to longer time scales, for which the variability is monofractal and scales in time with a power law corresponding to white noise. Southern Hemisphere (SH) variability also shows a transition at annual scales. The SH also shows a narrower dynamical range in multifractality than the NH, as seen in the generalized Hurst exponent and in the singularity spectra. The numerical integrations show that the models are able to reproduce the low-frequency variability but are not able to fully capture the shorter term variability of the stratosphere.
机译:将平流层描述为湍流系统,时间波动通常在不同的时间尺度上表现出不同的相关性,而间歇性行为无法用单个尺度上的指数来捕捉。在这项研究中,使用多重分形趋势下降波动分析(MF-DFA)研究了长期平流层变化的不同尺度定律。通过比较四个再分析产品和理想数值模型的不同实现方式进行分析,从而隔离了地形强迫和季节变化的作用,以及没有气候遥相关和小规模强迫的情况。北半球(NH)显示时间尺度短于大约1年的尺度指数过渡,该尺度的变异性是多重分形的,并且具有与红色频谱相对应的幂律的时间尺度向较长的时间尺度过渡是单分形的,并且随时间变化,其幂律与白噪声相对应。南半球(SH)的变异性也显示出年度尺度的转变。从广义Hurst指数和奇异谱图中可以看出,SH的多重分形动力学范围也比NH窄。数值积分表明,这些模型能够再现低频变化,但不能完全捕获平流层的短期变化。

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