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首页> 外文期刊>Journal of the Atmospheric Sciences >Observed Structure of Convectively Coupled Waves as a Function of Equivalent Depth:Kelvin Waves and the Madden—Julian Oscillation
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Observed Structure of Convectively Coupled Waves as a Function of Equivalent Depth:Kelvin Waves and the Madden—Julian Oscillation

机译:对流耦合波的观测结构与等效深度的关系:开尔文波和马登—朱利安振荡

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摘要

The view that convectively coupled Kelvin waves and the Madden–Julian oscillation (MJO) are distinct modes is tested by regressing data from the Climate Forecast System Reanalysis against satellite outgoing longwave radiation data filtered for particular zonal wavenumbers and frequencies by wavelet analysis. Results confirm that nearly dry Kelvin waves have horizontal structures consistent with their equatorial beta-plane shallow-water-theory counterparts, with westerly winds collocated with the lower-tropospheric ridge, while the MJO and signals along Kelvin wave dispersion curves at low shallow-water-model equivalent depths are characterized by geopotential troughs extending westward from the region of lower-tropospheric easterly wind anomalies through the region of lower-tropospheric westerly winds collocated with deep convection. Results show that as equivalent depth decreases from that of the dry waves (concomitant with intensification of the associated convection), the ridge in the westerlies and the trough in the easterlies shift westward. The analysis therefore demonstrates a continuous field of intermediate structures between the two extremes, suggesting that Kelvin waves and the MJO are not dynamically distinct modes. Instead, signals consistent with Kelvin waves become more consistent with the MJO as the associated convection intensifies. This result depends little on zonal scale. Further analysis also shows how activity in synoptic-scale Kelvin waves char-acterized by particular phase speeds evolves with the planetary-scale MJO.
机译:对流耦合开尔文波和马登-朱利安振荡(MJO)是不同模式的观点是通过对气候预报系统再分析数据与通过小波分析过滤掉的特定纬向波数和频率的卫星外出长波辐射数据进行回归检验的。结果证实,几乎干燥的开尔文波具有与赤道β平面浅水理论对应的水平结构,西风与低层对流层脊并置,而MJO和信号在低浅水时沿开尔文波色散曲线模式等效深度的特征是从低对流层东风异常区域向西延伸到低对流层西风与深对流并置的地势槽。结果表明,当等效深度从干浪的深度减小时(伴随相关对流的增强),西风脊和东风谷的槽向西偏移。因此,分析表明了两个极端之间的中间结构的连续场,这表明开尔文波和MJO并不是动态不同的模式。相反,随着对流的增强,与开尔文波一致的信号与MJO变得更加一致。该结果几乎不依赖于区域尺度。进一步的分析还显示,在天气尺度开尔文波中,由特定相速度表征的活动是如何随着行星尺度MJO演化的。

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