Indian National Centre for Ocean Information Services (INCOIS), Pragathi Nagar, Hyderabad, 500090, India.
Department of Meteorology and Oceanography, Andhra University, Visakhapatnam, 530003, India.
Nat Commun. 2019 Mar 19;10(1):1257. doi: 10.1038/s41467-019-09243-5.
Changes in sea level may be attributed either to barotropic (involving the entire water column) or baroclinic processes (governed by stratification). It has been widely accepted that barotropic sea level changes in the tropics are insignificant at intraseasonal time scales (periods of 30-80 days). Based on bottom pressure records, we present evidence for significant basin-wide barotropic sea level variability in the tropical Indian Ocean during December-April with standard deviations amounting to ∼30-60% of the standard deviation in total intraseasonal sea level variability. The origin of this variability is linked to a small patch of wind over the Eastern Indian Ocean, associated with boreal winter Madden-Julian Oscillations (MJO). These large fluctuations are likely to play a prominent role in the intraseasonal sea level and mass budgets. Because of their much faster propagation than baroclinic processes, they allow the basin to adjust to climatic perturbations much more rapidly than was previously thought.
海平面的变化可能归因于正压(涉及整个水柱)或斜压过程(受分层控制)。人们普遍认为,热带地区的季节性海平面变化在季节内时间尺度(30-80 天的周期)上并不显著。基于底部压力记录,我们提供了证据,表明在 12 月至 4 月期间,热带印度洋存在显著的全流域正压海平面变化,其标准偏差相当于季节内总海平面变化标准偏差的 30-60%。这种可变性的起源与与冬季风爆发 Madden-Julian 振荡(MJO)相关的印度洋东部的一小片风有关。这些大幅波动可能在季节内海平面和质量预算中发挥重要作用。由于它们的传播速度比斜压过程快得多,因此它们使盆地能够比以前认为的更快地对气候扰动做出调整。