Quantifying the relative importance of various physical mechanisms for plankton and nutrient transport between the shore and the shelf waters
Abstract:
In the past decade, significant progress has been made in investigating mechanisms responsible for cross-shore exchange in the nearshore. Yet the relative importance of these mechanisms in moving water and organisms across the nearshore, and regional differences in the importance of the processes is not known. Existing coastal numerical models focused on understanding exchange dynamics usually lack the resolution and physics to accurately represent nearshore processes.
Here, we present a review of dominant cross-shore exchange mechanisms identified through long-term field measurements, remote sensing and numerical modeling. The relative importance of individual physical transport mechanisms from the surf zone to the mid-shelf is compared by estimating an exchange velocity expressed as a depth-integrated Lagrangian velocity. Additional complexity in exchange dynamics associated with swimming behaviors is also discussed. A goal of this work is to guide other researchers in determining what physical features of their area must be known to understand which processes are locally important.
