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An Evaluation of Rotated EOF Analysis and Its Application to Tropical Pacific SST Variability

机译:旋转EOF分析的评估及其在热带太平洋海表温度变异中的应用

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摘要

As an effective eigen method for phenomenon identification and space reduction, empirical orthogonal function (EOF) analysis is widely used in climate research. However, because of its orthorgonality constraint, EOF analysis has a tendency to produce unphysical modes. Previous studies have shown that the drawbacks of EOF analysis could be partly alleviated by rotated EOF (REOF) analysis, but such studies are always based on specific cases. This paper provides a thorough statistical evaluation of REOF analysis by comparing its ability with that of EOF analysis in reproducing a large number of randomly selected stationary modes of variability. The synthetic experiments indicate that REOF analysis is overwhelmingly a better choice in terms of accuracy and effectiveness, especially for picking up localized patterns. When applied to the tropical Pacific sea surface temperature variability, REOF and EOF analyses show obvious discrepancies, with the former making much better physical sense. This challenges the validity of the so-called sea surface temperature cooling mode and the spatial structure of "El Nifio Modoki," both of which are recently identified by EOF analysis. At any rate, one has to be cautious when claiming new discoveries of climate modes based on EOF analysis alone.
机译:作为一种有效的现象识别和空间减少的特征方法,经验正交函数分析(EOF)被广泛用于气候研究。但是,由于正交性的限制,EOF分析倾向于产生非物理模式。先前的研究表明,通过旋转EOF(REOF)分析可以部分缓解EOF分析的弊端,但此类研究始终基于特定案例。本文通过比较REOF分析与EOF分析在复制大量随机选择的平稳变异模式方面的能力,提供了详尽的统计评估。综合实验表明,REOF分析在准确性和有效性方面绝对是更好的选择,尤其是对于拾取局部模式而言。当应用于热带太平洋海表温度变化时,REOF和EOF分析显示出明显的差异,前者具有更好的物理意义。这对所谓的海面温度冷却模式和“ El Nifio Modoki”的空间结构的有效性提出了挑战,最近两者都通过EOF分析确定。无论如何,在仅基于EOF分析主张新的气候模式发现时,必须谨慎。

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