Back to Search Start Over

Reflection of Linear Internal Tides from Realistic Topography: The Tasman Continental Slope.

Authors :
Klymak, Jody M.
Simmons, Harper L.
Braznikov, Dmitry
Kelly, Samuel
MacKinnon, Jennifer A.
Alford, Matthew H.
Pinkel, Robert
Nash, Jonathan D.
Source :
Journal of Physical Oceanography. Nov2016, Vol. 46 Issue 11, p3321-3337. 17p.
Publication Year :
2016

Abstract

The reflection of a low-mode internal tide on the Tasman continental slope is investigated using simulations of realistic and simplified topographies. The slope is supercritical to the internal tide, which should predict a large fraction of the energy reflected. However, the response to the slope is complicated by a number of factors: the incoming beam is confined laterally, it impacts the slope at an angle, there is a roughly cylindrical rise directly offshore of the slope, and a leaky slope-mode wave is excited. These effects are isolated in simulations that simplify the topography. To separate the incident from the reflected signal, a response without the reflector is subtracted from the total response to arrive at a reflected signal. The real slope reflects approximately 65% of the mode-1 internal tide as mode 1, less than two-dimensional linear calculations predict, because of the three-dimensional concavity of the topography. It is also less than recent glider estimates, likely as a result of along-slope inhomogeneity. The inhomogeneity of the response comes from the Tasman Rise that diffracts the incoming tidal beam into two beams: one focused along beam and one diffracted to the north. Along-slope inhomogeneity is enhanced by a partially trapped, superinertial slope wave that propagates along the continental slope, locally removing energy from the deep-water internal tide and reradiating it into the deep water farther north. This wave is present even in a simplified, straight slope topography; its character can be predicted from linear resonance theory, and it represents up to 30% of the local energy budget. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00223670
Volume :
46
Issue :
11
Database :
Academic Search Index
Journal :
Journal of Physical Oceanography
Publication Type :
Academic Journal
Accession number :
119573291
Full Text :
https://doi.org/10.1175/JPO-D-16-0061.1