Submesoscale dynamics in the Bay of Bengal: Inversions and instabilities
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High-resolution observations reveal the complex processes controlling the evolution and subduction of a cold and salty, dense filament in the Bay of Bengal. The filament, likely formed through coastal upwelling, was advected offshore by a mesoscale strain field and brought adjacent to fresher water from runoff and rain. The front on an edge of the dense filament is observed to undergo restratification and steepening, responding to evolving mesoscale and submesoscale convergence and divergences. Measurements and analyses indicate the development of both small-scale instabilities (such as SI) and slightly larger-scale ageostrophic secondary circulation, acting in concert to subduct and stir surface heat into the interior. Our results highlight the importance of small-scale three-dimensional dynamics in setting upper ocean properties in the Bay of Bengal., , , # Submesoscale Dynamics in the Bay of Bengal: Inversions and Instabilities
[https://doi.org/10.5061/dryad.6q573n644](https://doi.org/10.5061/dryad.6q573n644)
The data included in this set consists of physical properties of the upper ocean from a July 2019 survey of the Bay of Bengal from in-situ and satellite instrumentation.
## Description of the data and file structure
**Thermohaline variability**
Four .mat files labeled \"Section\_X.mat\" correspond to four transects from a shipboard profiling system (FastCTD). This data is in-situ and should be plotted on an x-z plane. These datasets include:
* temperature [degrees Celsius]
* salinity [psu]
* density [kg/m3]
* time
* geographical coordinates (latitude and longitude)
* depth, P [m]
**Velocity data**
The velocity data provided is derived from shipboard ADCP systems (sadcp\_tot.mat). The ADCP data used in this paper (300 kHz) can be accessed from the first structure in the cell array of sadcp\_tot.mat and includes:
* zonal and me...
创建时间:
2025-08-01



