PO23C:
The Ocean's Energy Cascade: Measuring and Modeling of Instabilities, Internal Waves, and Turbulence at the Submesoscale and Smaller II

Submit an Abstract to this Session

Session ID#: 11431

Session Description:
Large scale O(10^5 m) oceanic motions are linked to the turbulent scales O(<1 m) through a variety of mechanisms including internal wave radiation, interaction, and scattering, frontal instabilities, and boundary layer physics. Such mechanisms are essential for the vertical redistribution of energy generated along the ocean’s upper and bottom boundaries and thus are of critical importance in providing mechanical energy to processes in the stratified interior of the ocean. Regions of enhanced mixing are often found where a combination of currents, stratification, and topography act together to increase the potential for nonlinear interactions in the flow, for example through frontal instabilities and strong internal wave generation. Enhanced turbulence leads to mixing of water mass properties and changes to flow dynamics that can feedback on the larger-scale physics.  This session welcomes contributions from observational, theoretical, and numerical studies of the ocean's energy cascade at small scales (i.e. submesoscale and smaller).
Primary Chair:  Subhas Karan Venayagamoorthy, Colorado State University, Department of Civil and Environmental Engineering, Fort Collins, CO, United States
Chairs:  Louis St Laurent, Applied Physics Laboratory, University of Washington, Seattle, United States, Emily Shroyer, Oregon State Univ, Corvallis, United States and Harper L. Simmons, University of Washington, Seattle, United States
Moderators:  Emily Shroyer, Oregon State Univ, Corvallis, United States and Subhas Karan Venayagamoorthy, Colorado State University, Department of Civil and Environmental Engineering, Fort Collins, CO, United States
Student Paper Review Liaison:  Louis St Laurent, Woods Hole Oceanographic Institution, Physical Oceanography, Woods Hole, MA, United States
Index Terms:
Co-Sponsor(s):
  • A - Air-sea Interactions and Upper Ocean Processes
  • EC - Estuarine and Coastal
  • OD - Ocean Observing and Data Management
  • TP - Turbulent Processes

Abstracts Submitted to this Session:

Deep Cycle Turbulence and Oceanic Heat Uptake in the Eastern Equatorial Pacific (90505)
William Smyth, Oregon State University, Corvallis, OR, United States and Jim Moum, Oregon State University, College of Earth Ocean & Atmospheric Sciences, Corvalis, OR, United States
Enhanced Energy Dissipation in the Equatorial Pycnocline in a Simple Model of a Tropical Ocean (93482)
Andrei Natarov, NOAA/NWS/Pacific Tsunami Warning Center, Honolulu, United States
Internal Waves, Shear, and Mixing at the Equator (93057)
Jerome A Smith and San T Nguyen, Scripps Institution of Oceanography, La Jolla, CA, United States
BUOYANT GRAVITY CURRENTS RELEASED FROM TROPICAL INSTABILITY WAVES (90404)
Sally J Warner, Brandeis University, Environmental Studies Program & Physics Department, Waltham, United States, Ryan Holmes, University of New South Wales, Sydney, NSW, Australia, Jim Moum, Oregon State Univ, Corvallis, United States and Elizabeth H McHugh Hawkins, Oregon State University, CEOAS, Corvallis, OR, United States
The Tasman Tidal Dissipation Experiment: Tidal Mixing, Scattering, and Reflection on the East Tasman Slope (89143)
Robert Pinkel1, Matthew H Alford2, Drew J. Lucas3, Shaun Johnston4, Nicole L Jones5, Sam Kelly6, Jody M Klymak7, Jennifer A MacKinnon1, Jonathan D Nash8, Luc Rainville9, Harper L. Simmons10, Peter G Strutton11, Amy Frances Waterhouse12 and Zhongxiang Zhao13, (1)University of California San Diego, La Jolla, CA, United States, (2)Scripps Institution of Oceanography, UC San Diego, La Jolla, United States, (3)University of California San Diego, Scripps Institution of Oceanography, La Jolla, United States, (4)University of California San Diego, Scripps Institution of Oceanography, La Jolla, CA, United States, (5)University of Western Australia, Crawley, WA, Australia, (6)University of Minnesota Duluth, Duluth, United States, (7)University of Victoria, Victoria, BC, Canada, (8)Oregon State University, College of Earth, Ocean, and Atmospheric Sciences, Corvallis, United States, (9)University of Washington, Applied Physics Laboratory, Seattle, WA, United States, (10)University of Washington, Seattle, United States, (11)University of Tasmania, Institute for Marine and Antarctic Studies, Hobart, TAS, Australia, (12)Scripps Institution of Oceanography, La Jolla, United States, (13)Applied Physics Laboratory University of Washington, Seattle, United States
Diffraction and Reflection of the Internal Tide on the Tasman Continental Slope (90266)
Jody M Klymak, University of Victoria, Victoria, BC, Canada and Harper L. Simmons, University of Washington, Seattle, United States
Internal tide breaking processes at the Tasman Continental Slope (93271)
Matthew H Alford, University of California San Diego, Scripps Institution of Oceanography, La Jolla, CA, United States and The TTIDE Team
Pathway from tides to turbulence: fission of internal solitary waves over rough topography (90605)
Prof. Zhiyu Liu, PhD, Xiamen University, State Key Laboratory of Marine Environmental Science, and Department of Physical Oceanography and Meteorology, College of Ocean and Earth Sciences, Xiamen, China, Xiaolin Bai, University of Waterloo, Waterloo, ON, Canada and Tom Philip Rippeth, Bangor University, School of Ocean Sciences, Bangor, Wales, United Kingdom