Exchange of plankton, pollutants, and particles across the nearshore region

Exchange of material across the nearshore region, extending from the shoreline to a few kilometers offshore, determines the concentrations of pathogens and nutrients near the coast and the transport of larvae, whose cross-shore positions influence dispersal and recruitment. Here, we describe a framework for estimating the relative importance of cross-shore exchange mechanisms, including winds, Stokes drift, rip currents, internal waves, and diurnal heating and cooling. For each mechanism, we define an exchange velocity as a function of environmental conditions. The exchange velocity applies for organisms that keep a particular depth due to swimming or buoyancy. A related exchange diffusivity quantifies horizontal spreading of particles without enough vertical swimming speed or buoyancy to counteract turbulent velocities. This framework provides a way to determine which processes are important for cross-shore exchange for a particular study site, time period, and particle behavior.

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Related Links

Related Dataset #1 : Matlab tools to solve the viscous Taylor Goldstein equation for both instabilities and waves

Related Dataset #2 : Observations and Model Simulations from the Inner-Shelf Dynamics Experiment (ISDE)

Related Dataset #3 : National Aggregates of Geospatial Data Collection: Population, Landscape, And Climate Estimates, Version 3 (PLACE III)

Related Software #1 : Tools to generate particle tracks in linear and weakly nonlinear internal waves

Related Software #2 : JamiePringle/NearshoreParticleTransport: Release v1.0.0

Related Software #3 : nearshore-exchange toolbox

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Publisher UCAR/NCAR - Library
Publication Date 2023-01-16T00:00:00
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Metadata Date 2025-07-11T15:55:19.562043
Metadata Record Identifier edu.ucar.opensky::articles:26024
Metadata Language eng; USA
Suggested Citation . (2023). Exchange of plankton, pollutants, and particles across the nearshore region. UCAR/NCAR - Library. https://n2t.org/ark:/85065/d7bg2sw0. Accessed 30 December 2025.

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