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The role of the SST-thermocline relationship in Indian Ocean Dipole skewness and its response to global warming

机译:SST-热线关系在印度洋偶极子偏度中的作用及其对全球变暖的响应

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摘要

A positive Indian Ocean Dipole (IOD) tends to have stronger cold sea surface temperature anomalies (SSTAs) over the eastern Indian Ocean with greater impacts than warm SSTAs that occur during its negative phase. Two feedbacks have been suggested as the cause of positive IOD skewness, a positive Bjerknes feedback and a negative SST-cloud-radiation (SCR) feedback, but their relative importance is debated. Using inter-model statistics, we show that the most important process for IOD skewness is an asymmetry in the thermocline feedback, whereby SSTAs respond to thermocline depth anomalies more strongly during the positive phase than negative phase. This asymmetric thermocline feedback drives IOD skewness despite positive IODs receiving greater damping from the SCR feedback. In response to global warming, although the thermocline feedback strengthens, its asymmetry between positive and negative IODs weakens. This behaviour change explains the reduction in IOD skewness that many models display under global warming.
机译:印度洋偶极子(IOD)的正值往往在印度洋东部地区具有更强的冷海表面温度异常(SSTA),其负面影响要比温暖的SSTA大。已经提出了两种反馈,它们是IOD正偏的原因,正的Bjerknes反馈和负的SST云辐射(SCR)反馈,但它们的相对重要性尚有争议。使用模型间的统计数据,我们表明,IOD偏斜最重要的过程是热跃线反馈中的不对称性,因此SSTA在正相期间对热跃层深度异常的响应要强于负相。尽管IOD受到SCR反馈的更大阻尼,但这种非对称的温跃线反馈仍会驱动IOD偏斜。响应于全球变暖,尽管温跃层反馈增强,但其在正负IOD之间的不对称性减弱了。这种行为变化解释了许多模型在全球变暖下显示出的IOD偏斜度的降低。

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