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首页> 外文期刊>SOLA: Scientific Online Letters on the Atmosphere >The Effect of the Australian-Maritime Continents on the Indian Ocean Dipole Mode in an Idealized Coupled General Circulation Model
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The Effect of the Australian-Maritime Continents on the Indian Ocean Dipole Mode in an Idealized Coupled General Circulation Model

机译:理想耦合的一般环流模型中澳大利亚海域对印度洋偶极子模式的影响

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References(19) Supplementary materials(2) This paper investigates the effect of the Australian-maritime continents on the Indian Ocean Dipole (IOD) mode by using a coupled general circulation model (CGCM) under an idealized land—sea configuration. In such idealized CGCM experiments, the presence of the Australian-maritime continents increases the amplitude of the IOD between July and September. To determine the possible mechanisms associated with IOD enhancement by the Australian-maritime continents, the mean state during the boreal summer (austral winter) was compared from model runs both with, and without, the Australian-maritime continents. The presence of the Australian-maritime continents reduces rainfall during the austral winter, and generates an easterly (westerly) wind anomaly over the equatorial Indian Ocean (Pacific). These conditions are favorable for the development of a cooler SST and shallower thermocline, and hence enhance IOD amplitude through the thermocline feedback. In addition, a linear baroclinic model (LBM) experiment showed that the negative heating caused by the reduced rainfall over the Australian-maritime continents generates a significant easterly (westerly) wind anomaly over the equatorial Indian Ocean (Pacific) through the Matsuno—Gill response.
机译:参考文献(19)补充材料(2)本文通过在理想的陆海结构下使用耦合总环流模型(CGCM)研究澳大利亚海洋大陆对印度洋偶极子(IOD)模式的影响。在这种理想的CGCM实验中,澳大利亚海洋大陆的存在增加了7月至9月间IOD的振幅。为了确定与澳大利亚海洋大陆增加IOD相关的可能机制,比较了有和没有澳大利亚海洋大陆的模型运行期间北方夏季(南方冬季)的平均状态。澳大利亚海洋大陆的存在减少了南方冬季的降雨,并在赤道印度洋(太平洋)上产生了东风(西风)异常。这些条件有利于开发更冷的SST和更浅的热跃层,因此通过热跃层反馈提高了IOD幅度。此外,线性斜压模型(LBM)实验表明,澳大利亚海域大陆降水减少所引起的负热,通过松野-吉尔响应,在赤道印度洋(太平洋)上产生了明显的东风(西风)异常。 。

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