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Influences of IOD and ENSO to Indonesian rainfall variability: role of atmosphere-ocean interaction in the Indo-Pacific sector

机译:IOD和ENSO对印尼降雨变异性的影响:大气 - 海洋互动在印度 - 太平洋部门的作用

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The relative influences of Indian Ocean dipole (IOD) and El Nino-Southern Oscillation (ENSO) on Indonesian rainfall are investigated for seasonal time scales. For the period 1960-2011, observation and reanalysis products during September to November (SON) are used to assess the impacts of ENSO and IOD in Indonesian region. Composite of SSTs and Indonesian rainfall anomalies shows detailed features in the different phases of ENSO and IOD. A distinct impact on rainfall anomalies is found during the years when an El Nino and a positive IOD event or a La Nina and a negative IOD event co-occur indicating the interplay of ENSO and IOD in generating rainfall anomalies in Indonesian region. The atmospheric circulation and sea surface temperatures associated with these responses are discussed. Using composite analysis of anomalies of rainfall, sea surface temperature (SSTs), and circulation at any atmospheric levels, it is shown that positive anomalies of rainfall over Indonesia start to be decreased when SSTs surrounding Indonesia are cool and The Walker Circulation is weakened, resulting in anomalous surface easterlies across Indonesia. The composite analysis of rainfall anomalies and the SSTs showed that rainfall variability in Indonesia is clearly influenced by IOD and ENSO phenomena. This study highlights the atmosphere-ocean interaction in Indo-Pacific sector which plays an important role on Indonesian rainfall variability.
机译:印度洋偶极子(IOD)和厄尔尼诺 - 南方涛动(ENSO)印尼降雨的相关影响进行了研究季节性时间尺度。期间一九六〇年至2011年,九月至十一月(SON)中观察和再分析产品用于评估ENSO和IOD的在印度尼西亚区域的影响。复合表层海水温度和印度尼西亚的降水异常节目中ENSO和IOD的不同阶段详细的功能。降雨异常一个显着的影响时的年被发现,当厄尔尼诺和正IOD事件或拉尼娜和负IOD事件同时出现表示在印度尼西亚区域产生降水异常ENSO和IOD的相互作用。与这些反应相关的大气环流和海表温度进行了讨论。使用降雨异常的复合分析,海洋表面温度(自助服务科技),和循环在任何大气压的水平,其示出的是降雨量印度尼西亚的正异常开始降低时周围印度尼西亚的SST凉爽和Walker环流被减弱,从而导致在印尼各地的反常表面东风。降水异常和海温的组合分析显示,印尼是降雨量的变化显然是由IOD和ENSO现象的影响。这项研究强调在印度洋 - 太平洋板块起着印尼降雨量的变化具有重要作用的大气 - 海洋相互作用。

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