论文标题

孟加拉湾的区域海洋建模系统的涡流相互作用

Eddy-freshwater Interaction using Regional Ocean Modeling System in the Bay of Bengal

论文作者

Paul, Nihar, Sukhatme, Jai, Gayen, Bishakhdatta, Sengupta, Debasis

论文摘要

使用区域海洋建模系统进行了高分辨率模拟,研究了孟加拉北湾(BOB)的涡流相互作用。经过观察,该模型模拟了从2015年10月至115年11月至11月至11月的次月尺度上,通过旋风中尺度的涡流模拟河水的捕获和均匀化。由于新鲜的河水被困在涡流中,其特征是盐度强的垂直和横向梯度。在几周之内,这些梯度以及涡流中淡水的进行性均质化放松。混合层盐度预算还显示出年龄性垂直对流的重要性,除了在涡流中盐度进化期间的横向对流外。对上海中涡流动能预算(EKE)预算的分析表明,正压和压力层型不稳定性的发展。 EKE转换项的垂直轮廓表明,表面淡水参与混合层内的斜压不稳定性的演变。此外,涡流的势能(EPE)预算表明,河水的夹带增加了EPE,这是由于诱捕事件期间涡流的侧向盐度梯度增加所致。随后,盐度均质化导致EPE降低,其衰减速率受到表面浮力通量与密度异常之间的相关性调节。最后,重新分析的数据显示了多年来的类似捕获和均质化事件,强调了这种鲍勃中季节性淡水进化机制的重要性。

Eddy-freshwater interaction is studied in the north Bay of Bengal (BoB) with a high-resolution simulation using the Regional Ocean Modeling System. Following observations, the model simulates the trapping and homogenization of river water by a cyclonic mesoscale eddy on a sub-monthly time scale from October-November of 2015. As fresh river water is trapped in the eddy, it is characterized by strong vertical and lateral gradients in salinity. Within a few weeks, these gradients relax along with the progressive homogenization of freshwater within the eddy. A mixed layer salinity budget shows the importance of ageostrophic vertical advection in addition to lateral advection during the evolution of salinity within the eddy. An analysis of the eddy kinetic energy (EKE) budget in the upper ocean indicates the development of barotropic and baroclinic instabilities. The vertical profiles of EKE conversion terms reveal that the surface freshwater was involved in the evolution of baroclinic instability within the mixed layer. In addition, an eddy available potential energy (EPE) budget shows that the entrainment of the river water raises the EPE, which is due to an increase in lateral salinity gradients across the eddy during the trapping event. Subsequently, the salinity homogenization leads to a decrease in the EPE, and its rate of decay is modulated by a correlation between surface buoyancy fluxes and density anomalies. Finally, reanalysis data show similar trapping and homogenization events across multiple years, highlighting the importance of this mechanism of subseasonal freshwater evolution in the BoB.

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