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首页> 外文期刊>Journal of Climate >Indo-Pacific Variability on Seasonal to Multidecadal Time Scales. Part II: Multiscale Atmosphere-Ocean Linkages
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Indo-Pacific Variability on Seasonal to Multidecadal Time Scales. Part II: Multiscale Atmosphere-Ocean Linkages

机译:对季节性的印度太平洋变异为多个时间尺度。 第二部分:多尺度大气 - 海洋联系

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The coupled atmosphere-ocean variability of the Indo-Pacific domain on seasonal to multidecadal time scales is investigated in CCSM4 and in observations through nonlinear Laplacian spectral analysis (NLSA). It is found that ENSO modes and combination modes of ENSO with the annual cycle exhibit a seasonally synchronized southward shift of equatorial surface zonal winds and thermocline adjustment consistent with terminating El Nio and La Nina events. The surface winds associated with these modes also generate teleconnections between the Pacific and Indian Oceans, leading to SST anomalies characteristic of the Indian Ocean dipole. The family of NLSA ENSO modes is used to study El Nino-La Nino asymmetries, and it is found that a group of secondary ENSO modes with more rapidly decorrelating temporal patterns contributes significantly to positively skewed SST and zonal wind statistics. Besides ENSO, fundamental and combination modes representing the tropospheric biennial oscillation (TBO) are found to be consistent with mechanisms for seasonally synchronized biennial variability of the Asian-Australianmonsoon andWalker circulation. On longer time scales, a multidecadal pattern referred to as the west Pacific multidecadal mode (WPMM) is established to significantly modulate ENSO and TBO activity, with periods of negative SST anomalies in the western tropical Pacific favoring stronger ENSO and TBO variability. This behavior is attributed to the fact that cold WPMM phases feature anomalous decadal westerlies in the tropical central Pacific, as well as an anomalously flat zonal thermocline profile in the equatorial Pacific. Moreover, the WPMM is found to correlate significantly with decadal precipitation over Australia.
机译:在CCSM4中研究了在CCSM4中的季节性到多型时间尺度的偶联域的耦合气氛 - 海洋变异,并通过非线性拉普拉斯光谱分析(NLSA)观察。结果发现,随着年周期的ENSO模式和组合模式表现出赤道地面危险风的季节性同步和与终止EL NIO和LA NINA事件一致的热控调节。与这些模式相关的表面风也会产生太平洋和印度洋之间的遥连接,导致印度洋偶极子的SST异常特征。 NLSA ENSO模式的家族用于研究EL Nino-La Nino不对称,并且发现一组具有更快去相关的时间模式的次级ENSO模式显着贡献,以积极倾斜SST和Zonal风统计。除了enso外,还发现代表对流层两年形振荡(TBO)的基本和组合模式与亚洲澳大利亚莫森和世界循环的季节性同步两年期变异的机制一致。在较长的时间尺度上,建立了作为西太平洋多型模式(WPMM)的多型模式,以显着调节ENSO和TBO活动,以及西部热带太平洋的负面SST异常时期,优势更强的ENSO和TBO变异。这种行为归因于冷的WPMM阶段特征在热带中部太平洋的异常Decadal Westerlies,以及在赤道太平洋的异常平坦的Zonal Thermoclow曲线。此外,发现WPMM与澳大利亚的二道沉淀显着相关。

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