The influence of an eddy in the success rates and distributions of passively advected or actively swimming biological organisms crossing the continental slope

Alternative Title
Date Created
Location
DOI
10.1175/JPO-D-19-0209.1
Related Materials
Replaces
Replaced By
Keywords
Ocean
Eddies
Nonlinear dynamics
Transport
Abstract
The Lagrangian characteristics of the surface flow field arising when an idealized, anticyclonic, mesoscale, isolated deep-ocean eddy collides with continental slope and shelf topography are explored. In addition to fluid parcel trajectories, we consider the trajectories of biological organisms that are able to navigate and swim, and for which shallow water is a destination. Of particular interest is the movement of organisms initially located in the offshore eddy, the manner in which the eddy influences the ability of the organisms to reach the shelf break, and the spatial and temporal distributions of organisms that do so. For nonswimmers or very slow swimmers, the organisms arrive at the shelf break in distinct pulses, with different pulses occurring at different locations along the shelf break. This phenomenon is closely related to the episodic formation of trailing vortices that are formed after the eddy collides with the continental slope, turns, and travels parallel to the coast. Analysis based on finite-time Lyapunov exponents reveals initial locations of all successful trajectories reaching the shoreline, and provides maps of the transport pathways showing that much of the cross-shelf-break transport occurs in the lee of the eddy as it moves parallel to the shore. The same analysis shows that the onshore transport is interrupted after a trailing vortex detaches. As the swimming speeds are increased, the organisms are influenced less by the eddy and tend to show up en mass and in a single pulse.
Description
Author Posting. © American Meteorological Society, 2020. This article is posted here by permission of American Meteorological Society for personal use, not for redistribution. The definitive version was published in Journal of Physical Oceanography 50(7), (2020): 1839-1852, https://doi.org/10.1175/JPO-D-19-0209.1.
Embargo Date
Citation
Rypina, I. I., Pratt, L. J., Entner, S., Anderson, A., & Cherian, D. (2020). The influence of an eddy in the success rates and distributions of passively advected or actively swimming biological organisms crossing the continental slope. Journal of Physical Oceanography, 50(7), 1839-1852.
Cruises
Cruise ID
Cruise DOI
Vessel Name