Abstract
AbstractMotivated by the phenomenon of Scotian Shelf Crossover events, the problem of a shelf flow that is interrupted by a strait is considered. Laboratory experiments in a rotating tank with barotropic and baroclinic flow over flat and sloping shelves confirm that the flow is steered by the bathymetric contours and mainly circumnavigates the gulf. In order to jump across the strait, as suggested by earlier theories, the flow must have unrealistically high Rossby numbers. However, the near bottom friction relaxes the bathymetric constraint and causes the formation of a peculiar jet crossing the strait diagonally. For the dissipation values such that a half of the transport goes around the gulf and half crosses the strait diagonally, the diagonal crossover jet becomes most evident. Numerical solutions for realistic values of the frictional parameter reproduce the results of the laboratory experiments and consideration of the actual Gulf of Maine bathymetry reproduces patterns similar to those observed by drift trajectories and in the satellite derived sea surface temperature fields.
Funder
National Science Foundation
Publisher
Springer Science and Business Media LLC
Reference33 articles.
1. Beardsley RC, Butman B, Geyer WR, Smith PC (1997) Physical oceanography of thegulf of maine: an update. Gulf of Maine Ecosystem Dynamics: a Scientific Symposium and Workshop, RARGOM Report 97–1:39–52
2. Bisagni JJ, Smith PC (1998) Eddy-induced flow of scotian shelf water across Northeast Channel, Gulf of Maine. Continental Shelf Res 18:515–539
3. Bisagni JJ, Beardsley RC, Rusham CM, Manning JP, Williams W (1996) Climatological effects of toporography and land-sea heating contrasts on the gravity wave-driven circulation of the mesosphere. Deep-Sea Res 43:1439–1471. https://doi.org/10.1175/1520-0469(2003)060<0103:CEOOAL>2.0.CO;2
4. Chapman DC (2003) Separation of an advectively trapped buoyancy current at a bathymetric bend. J Phys Oceanography 33:1108–1121
5. Chapman DC, Lentz SJ, Brink KH (1988) A comparison of empirical and dynamical hindcasts of low-frequency, wind-driven motions over a continental shelf. J Geophys Res 93(C10):12409–12422