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An Analysis of Nonlinear Relationship between the MJO and ENSO

机译:MJO与ENSO之间的非线性关系分析

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Using the Hilbert Singular Value Decomposition (HSVD) and the Nonlinear Canonical Correlation Analysis (NLCCA), we analyzed the statistical relationship of MJO (Madden-Julian Oscillation) and ENSO (El Niño and Southern Oscillation). It was found that while a linear analysis produced no significant relationship between MJO and ENSO, a low-order nonlinear analysis based on the quadratic function of HSVD led to statistically significant lagged correlations. When their nonlinear relationship was further extracted by the NLCCA, stronger correlation was obtained, with the maximum correlation coefficient appearing while the MJO signals preceding the ENSO signals by around 2 months and 5.6 months respectively. The time lags producing the maximum correlation are respectively consistent with the characteristic time of MJO influencing ENSO dominated by two physical processes: the equatorial Kelvin waves and air-sea feedback. Corresponding to the two different physical processes, ENSO shows different features of development. In the former scenario, the westerly winds in the western Pacific excite the equatorial Kelvin waves which propagate eastward and deepen the thermocline in the eastern Pacific, resulting in the sea surface warming at the far eastern Pacific near the coast. In the latter scenario, the westerly anomalies in the western Pacific precede the development of El Niño through bringing surface warm water into the central and eastern Pacific, thus the sea surface warming occurs across the whole eastern Pacific ocean.
机译:使用希尔伯特奇异值分解(HSVD)和非线性典范相关分析(NLCCA),我们分析了MJO(Madden-Julian涛动)和ENSO(厄尔尼诺和南方涛动)的统计关系。结果发现,尽管线性分析在MJO和ENSO之间没有产生显着关系,但基于HSVD二次函数的低阶非线性分析却导致统计上显着的滞后相关。当通过NLCCA进一步提取它们的非线性关系时,获得了更强的相关性,同时最大的相关系数出现在MJO信号先于ENSO信号约2个月和5.6个月的时候。产生最大相关性的时滞分别与MJO影响ENSO的特征时间一致,该特征时间主要由两个物理过程控制:赤道开尔文波和海气反馈。对应于两种不同的物理过程,ENSO显示出不同的发展特征。在前一种情况下,西太平洋的西风激发了赤道开尔文波,该波向东传播并加深了东太平洋的热跃层,导致沿海附近的远东太平洋海面变暖。在后一种情况下,西太平洋的西风异常通过将地表暖水引入中太平洋和东太平洋而先于厄尔尼诺现象发展,因此整个东太平洋都发生了海面变暖。

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