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Comparison of the positive and negative Indian Ocean Dipole forcing on the Pacific interannual variability through the oceanic channel

机译:积极和负面印度洋偶极迫使海洋渠道太平洋际变异性的比较

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Numerical experiments using a regional ocean–atmosphere coupled general circulation model show the influence of Indian Ocean Dipole (IOD) events on the Pacific Ocean through the oceanic channel known as the Indonesian Throughflow (ITF) by isolating the role of the atmospheric bridge. The 2019 Positive IOD and 2016 Negative IOD events can force enhanced and decreased ITF transport through subsurface processes. Currents and sea level anomalies allowed a thorough comparison between 2016 and 2019 IOD events. The upwelling and downwelling Kelvin waves can propagate through the Indonesian seas along the Sumatra–Java island chain, forcing SSHA in the southeastern basin to grow quickly and reach the western Pacific Ocean. The numerical results suggest that the 2016 negative IOD could cause an El Ni?o-like state and that the 2019 positive IOD could cause a La Ni?a-like state in the Pacific Ocean.
机译:利用区域海洋气氛的数值实验耦合通用循环模型展示了印度洋偶极(IOD)事件通过隔离大气桥梁的作用,通过海洋渠道通过被称为印度尼西亚通风(ITF)的海洋渠道的影响。 2019年积极IOD和2016负IOD事件可以通过地下流程强制增强和减少ITF运输。 电流和海平面异常允许2016年和2019年IOD活动之间进行了彻底的比较。 Upplying和Howlinding Kelvin波浪可以通过苏门答腊爪哇岛连锁店的印度尼西亚海传播,迫使SSHA在东南盆地迅速增长,达到西太平洋。 数值结果表明,2016年负IOD可能导致EL NI的状态,即2019年的正极IOD可能导致太平洋的LA NI?似的状态。

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