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Symmetric scaling properties in global surface air temperature anomalies

机译:全球地面气温异常中的对称缩放特性

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We have recently suggested "long-term memory" or internal long-range correlation within the time-series of land-surface air temperature (LSAT) anomalies in both hemispheres. For example, an increasing trend in the LSAT anomalies is followed by another one at a different time in a power-law fashion. However, our previous research was mainly focused on the overall long-term persistence, while in the present study, the upward and downward scaling dynamics of the LSAT anomalies are analysed, separately. Our results show that no significant fluctuation differences were found between the increments and decrements in LSAT anomalies, over the whole Earth and over each hemisphere, individually. On the contrary, the combination of land-surface air and sea-surface water temperature anomalies seemed to cause a departure from symmetry and the increments in the land and sea surface temperature anomalies appear to be more persistent than the decrements.
机译:我们最近建议在两个半球的地表气温(LSAT)异常的时间序列内进行“长期记忆”或内部长期关联。例如,LSAT异常的趋势呈上升趋势,然后又以幂律的方式在不同时间出现另一个趋势。但是,我们之前的研究主要集中在总体长期持久性上,而在本研究中,分别分析了LSAT异常的向上和向下缩放动力学。我们的结果表明,在整个地球和每个半球上,LSAT异常的增量和减量之间均未发现明显的波动差异。相反,地表空气和海表水温度异常的组合似乎导致偏离对称性,并且陆地和海表温度异常的增加似乎比减少量更持久。

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  • 来源
    《Theoretical and applied climatology》 |2015年第4期|767-773|共7页
  • 作者单位

    Univ Athens, Fac Phys, Div Environm Phys & Meteorol, Climate Res Grp, Athens 15784, Greece;

    Univ Athens, Fac Phys, Div Environm Phys & Meteorol, Climate Res Grp, Athens 15784, Greece;

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