首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >The role of air-sea interaction over the Indian Ocean in the in-phase transition from the Indian summer monsoon to the Australian boreal winter monsoon
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The role of air-sea interaction over the Indian Ocean in the in-phase transition from the Indian summer monsoon to the Australian boreal winter monsoon

机译:在印度洋夏季风向澳大利亚北方冬季风的同相过渡中,印度洋海气相互作用的作用

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The Indian Ocean sea surface temperature (SST) can affect the regional climate in the surrounding regions, including the Indian summer monsoon (ISM) and the Australian summer monsoon (ASM) variability. Recently, it was demonstrated that the in-phase ISM-to-ASM transition can be accomplished through monsoon-Indian Ocean interaction solely. To investigate this issue, a long-term simulation of a hybrid coupled model (HCM) is conducted, in which the atmospheric general circulation model is coupled with a slab ocean model in the Indian Ocean only. Air-sea interactions are allowed only in the tropical Indian Ocean, and the climatological sea surface temperature is specified outside the tropical Indian Ocean. Results from the idealized simulation indicate that the Indian Ocean SST itself can induce in-phase ISM-to-ASM transitions. A wet ISM is largely associated with cool SST in the tropical South Indian Ocean in summer. A wet ASM is also associated with cool SST anomalies in summer. These cool SST anomalies persist until fall and lead to anomalous downward flows over the center of the tropical South Indian Ocean. Consequently, anomalous low-level convergences dominates over northern Australia until winter, which induces a wet ASM.
机译:印度洋海表温度(SST)会影响周围地区的区域气候,包括印度夏季风(ISM)和澳大利亚夏季风(ASM)的变异性。最近,证明了仅通过季风-印度洋相互作用就可以完成从ISM到ASM的同相过渡。为了研究这个问题,对混合耦合模型(HCM)进行了长期仿真,其中大气总环流模型仅与印度洋中的平板海洋模型耦合。仅在热带印度洋中才允许海-海相互作用,并且在热带印度洋以外规定了气候海面温度。理想化模拟的结果表明,印度洋海表温度本身可以诱发ISM向ASM的同相过渡。夏季,ISM湿润与热带SST凉爽有关。夏季,潮湿的ASM也与凉爽的SST异常有关。这些凉爽的海温异常一直持续到秋天,并导致热带南印度洋中心的异常向下流动。因此,直到冬季冬季,低水平的辐合作用在澳大利亚北部一直占主导地位,这导致了潮湿的ASM。

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