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Uncertainty in Indian Ocean Dipole response to global warming: the role of internal variability

机译:印度洋偶极子对全球变暖的不确定性:内部变率的作用

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摘要

The Indian Ocean Dipole (IOD) is one of the leading modes of interannual sea surface temperature (SST) variability in the tropical Indian Ocean (TIO). The response of IOD to global warming is quite uncertain in climate model projections. In this study, the uncertainty in IOD change under global warming, especially that resulting from internal variability, is investigated based on the community earth system model large ensemble (CESM-LE). For the IOD amplitude change, the inter-member uncertainty in CESM-LE is about 50% of the intermodel uncertainty in the phase 5 of the coupled model intercomparison project (CMIP5) multimodel ensemble, indicating the important role of internal variability in IOD future projection. In CESM-LE, both the ensemble mean and spread in mean SST warming show a zonal positive IOD-like (pIOD-like) pattern in the TIO. This pIOD-like mean warming regulates ocean-atmospheric feedbacks of the interannual IOD mode, and weakens the skewness of the interannual variability. However, as the changes in oceanic and atmospheric feedbacks counteract each other, the inter-member variability in IOD amplitude change is not correlated with that of the mean state change. Instead, the ensemble spread in IOD amplitude change is correlated with that in ENSO amplitude change in CESM-LE, reflecting the close inter-basin relationship between the tropical Pacific and Indian Ocean in this model.
机译:印度洋偶极子(IOD)是热带印度洋(TIO)中年际海表温度(SST)变异性的主要模式之一。在气候模型预测中,IOD对全球变暖的响应尚不确定。在这项研究中,基于社区地球系统模型大集合(CESM-LE)研究了全球变暖下IOD变化的不确定性,尤其是内部变率引起的不确定性。对于IOD振幅变化,CESM-LE中的成员间不确定性大约是耦合模型比对项目(CMIP5)多模型集合的第5阶段模型间不确定性的50%,这表明内部可变性在IOD未来预测中的重要作用。在CESM-LE中,总体平均温度和平均SST升温的传播都在TIO中显示了带状IOD样(pIOD样)阳性。这种类似pIOD的平均变暖调节了年际IOD模式的海洋-大气反馈,并减弱了年际变化的偏度。但是,由于海洋和大气反馈的变化相互抵消,因此IOD振幅变化的成员间变化与平均状态变化不相关。取而代之的是,CESM-LE中IOD振幅变化的集合散布与ENSO振幅变化的集合散布相关,反映了该模型中热带太平洋和印度洋之间的流域间紧密联系。

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