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Influence of the Stratospheric Quasi-Biennial Oscillation on the Madden-Julian Oscillation during Austral Summer

机译:澳大利亚夏季地区夏季朱利安振荡的流程层准二年两年 - 两年期振荡的影响

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Influence of the stratospheric quasi-biennial oscillation (QBO) on the Madden-Julian oscillation (MJO) and its statistical significance are examined for austral summer (DJF) in neutral ENSO events during 1979-2013. The amplitude of the OLR-based MJO index (OMI) is typically larger in the easterly phase of the QBO at 50 hPa (E-QBO phase) than in the westerly (W-QBO) phase. Daily composite analyses are performed by focusing on phase 4 of the OMI, when the active convective system is located over the eastern Indian Ocean through the Maritime Continent. The composite OLR anomaly shows a larger negative value and slower eastward propagation with a prolonged period of active convection in the E-QBO phase than in the W-QBO phase. Statistically significant differences of the MJO activities between the QBO phases also exist with dynamical consistency in the divergence of horizontal wind, the vertical wind, the moisture, the precipitation, and the 100-hPa temperature. A conditional sampling analysis is also performed by focusing on the most active convective region for each day, irrespective of the MJO amplitude and phase. Composite vertical profiles of the conditionally sampled data over the most active convective region reveal lower temperature and static stability around the tropopause in the E-QBO phase than in the W-QBO phase, which indicates more favorable conditions for developing deep convection. This feature is more prominent and extends into lower levels in the upper troposphere over the most active convective region than other tropical regions. Composite longitude-height sections show similar features of the large-scale convective system associated with the MJO, including a vertically propagating Kelvin response.
机译:澳大利亚夏季(DJF)在1979 - 2013年审查了澳大利亚夏季(DJF)对麦德顿朱利安振荡(MJO)及其统计学意义的影响。基于OLR的MJO指数(OMI)的幅度通常在QBO的东部相位为50 HPA(E-QBO相),而不是在西方(W-QBO)相中。当积极的对流系统通过海洋大陆地位在东部印度洋时,通过聚焦OMI的第4阶段来执行每日复合分析。复合OLR异常显示出较大的负值,并在E-QBO相中的长时间的激活对流期比W-QBO相中的延长时期。 QBO阶段之间的MJO活性的统计学意义也存在于水平风,垂直风,水分,沉淀和100-HPA温度的沟渠的动态一致性。不管MJO幅度和相位如何,还通过聚焦最活跃的对流区域来执行条件采样分析。在最活跃的对流区域上有条件采样数据的复合垂直简档会显示出在E-QBO相中的对流层中的较低温度和静态稳定性,而不是在W-QBO期中,这表明了发展深入对流的更有利条件。该特征更加突出,并且在最活跃的对流区域上延伸到上层对流层的较低水平而不是其他热带地区。复合经度高度部分显示与MJO相关的大规模对流系统的类似特征,包括垂直传播的开尔文响应。

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