Dataset available at http://hdl.handle.net/10261/151808We study the problem of sinking particles in a realistic oceanic flow, with major energetic structures in the mesoscale, focussing in the range of particle sizes and densities appropriate for marine biogenic particles. Our aim is to unify the theoretical investigations with its applications in the oceanographic context and considering a mesoscale simulation of the oceanic velocity field. By using the equation of motion of small particles in a fluid flow, we assess the influence of physical processes such as the Coriolis force and the inertia of the particles, and we conclude that they represent negligible corrections to the most important terms, which are passive motion with the velocit...
International audienceThe gravitational sinking of organic particles is a vital component of the bio...
We study the vertical dispersion and distribution of negatively buoyant rigid microplastics within a...
We study the vertical dispersion and distribution of negatively buoyant rigid microplastics within a...
International audienceWe study the problem of sinking particles in a realistic oceanic flow, with ma...
LAOP project, CTM2015-66407-P (AEI/FEDER, EU), from the Office of Naval Research, grant no. N00014-1...
Data generated in this study are available from the URL https://doi.org/10.20350/digitalCSIC/8630Sed...
Any type of non-buoyant material in the ocean is transported horizontally by currents during its sin...
Any type of non-buoyant material in the ocean is transported horizontally by currents during its sin...
Numerical simulations were carried out to determine the particle size distribution (PSD) in marine w...
The downward transport of surface particle production constitutes an important mechanism for carbon ...
We study the vertical dispersion and distribution of negatively buoyant rigid microplastics within a...
Sinking particles are critical to the ocean's “biological pump,” sequestering carbon from the atmosp...
International audienceThe gravitational sinking of organic particles is a vital component of the bio...
We study the vertical dispersion and distribution of negatively buoyant rigid microplastics within a...
We study the vertical dispersion and distribution of negatively buoyant rigid microplastics within a...
International audienceWe study the problem of sinking particles in a realistic oceanic flow, with ma...
LAOP project, CTM2015-66407-P (AEI/FEDER, EU), from the Office of Naval Research, grant no. N00014-1...
Data generated in this study are available from the URL https://doi.org/10.20350/digitalCSIC/8630Sed...
Any type of non-buoyant material in the ocean is transported horizontally by currents during its sin...
Any type of non-buoyant material in the ocean is transported horizontally by currents during its sin...
Numerical simulations were carried out to determine the particle size distribution (PSD) in marine w...
The downward transport of surface particle production constitutes an important mechanism for carbon ...
We study the vertical dispersion and distribution of negatively buoyant rigid microplastics within a...
Sinking particles are critical to the ocean's “biological pump,” sequestering carbon from the atmosp...
International audienceThe gravitational sinking of organic particles is a vital component of the bio...
We study the vertical dispersion and distribution of negatively buoyant rigid microplastics within a...
We study the vertical dispersion and distribution of negatively buoyant rigid microplastics within a...