OS11A:
Nearshore Processes I Posters

Session ID#: 1743

Monday, 15 December 2014: 8:00 AM-12:20 PM
Not an Option (Moscone West)
Chairs:  Julia C Mullarney, University of Waikato, School of Science, Hamilton, New Zealand and Alec Torres-Freyermuth, UNAM National Autonomous University of Mexico, Mexico City, Mexico
Primary Convener:  Julia C Mullarney, University of Waikato, Dept. Earth and Ocean Sciences, Hamilton, New Zealand
Co-conveners:  Cheryl Ann Blain, Naval Research Laboratory, Oceanography Division, Stennis Space Center, MS, United States, Alec Torres-Freyermuth, UNAM National Autonomous University of Mexico, Mexico City, Mexico and Hansong Tang, CCNY, Department of Civil Engineering, New York, NY, United States
OSPA Liaison:  Julia C Mullarney, University of Waikato, School of Science, Hamilton, New Zealand
Co-Sponsor(s):
  • EP - Earth and Planetary Surface Processes
Index Terms:

3022 Marine sediments: processes and transport [MARINE GEOLOGY AND GEOPHYSICS]
4217 Coastal processes [OCEANOGRAPHY: GENERAL]
4546 Nearshore processes [OCEANOGRAPHY: PHYSICAL]
4558 Sediment transport [OCEANOGRAPHY: PHYSICAL]
Virtual Option?: No

Abstracts Submitted to this Session:

 
A Numerical Study of Nonlinear Wave Interactions (9231)
Anouk de Bakker, Utrecht University, Physical Geography, Utrecht, 3584, Netherlands, Marion Tissier, Delft University of Technology, Environmental Fluid Mechanics, Delft, Netherlands and Gerben Ruessink, Utrecht University, Physical Geography, Utrecht, Netherlands
 
On the Shoaling of Solitary Waves in the Presence of Short Random Waves (10529)
Miao Tian1, Alexandru Sheremet1, James Michael Kaihatu2 and Gangfeng Ma3, (1)University of Florida, Engineering School of Sustainable Infrastructure & Environment, Gainesville, FL, United States, (2)Texas A&M University, Zachry Department of Civil and Environmental Engineering, College Station, United States, (3)Old Dominion University, Department of Civil and Environmental Engineering, Norfolk, VA, United States
 
Evolution of Random Nonlinear Infragravity Waves in Coastal Waters (14686)
Alexandru Sheremet1, Miao Tian1 and Victor I Shrira2, (1)University of Florida, Engineering School of Sustainable Infrastructure & Environment, Gainesville, FL, United States, (2)Keele University, Staffordshire, ST5, United Kingdom
 
Experimental and Numerical Analysis of Infragravity Waves in a Dissipative Beach (18544)
Mario Alberto Conde1, Luis Otero Diaz1, Juan Camilo Restrepo L.1, Juan Carlos Ortiz R.1, Andres Fernando Osoria Arias2, Julie Katherine Ruiz Merchan1 and Jennifer Katherine Montaño Muñoz2, (1)Universidad del Norte, Barranquilla, Colombia, (2)Universidad Nacional, Antioquia, Medellin, Colombia
 
The spatial cross-correlation structure induced by wave refraction near Scripps Canyon. (21425)
Pieter Smit1, Tim T Janssen2 and Thomas H C Herbers2, (1)Sofar Ocean Technologies, San Francisco, CA, United States, (2)Theiss Research, La Jolla, CA, United States
 
Swell-generated Set-up and Infragravity Wave Propagation Over a Fringing Coral Reef: Implications for Wave-driven Inundation of Atoll Islands (26580)
Olivia M Cheriton1, Curt Daron Storlazzi2, Kurt J Rosenberger1, Ellen Quataert3 and Ap Van Dongeren3, (1)USGS Pacific Science Ctr, Santa Cruz, CA, United States, (2)US Geological Survey, Pacific Coastal and Marine Science Center, Santa Cruz, United States, (3)Deltares, Delft, Netherlands
 
Application of a Phase-resolving, Directional Nonlinear Spectral Wave Model (28177)
Justin R Davis1, Alexandru Sheremet1, Miao Tian1 and Jeffrey L Hanson2, (1)University of Florida, Engineering School of Sustainable Infrastructure & Environment, Gainesville, FL, United States, (2)USACE / ERDC-CHL, Kitty Hawk, NC, United States
 
Improving coastal wave hindcasts by combining offshore buoy observations with global wave models. (12834)
Sean C Crosby1, William C O'Reilly2 and Robert T Guza2, (1)University of Calif San Diego, La Jolla, United States, (2)University of California San Diego, Scripps Institution of Oceanography, La Jolla, United States
 
Approximations of the Wave Action Equation in Strongly Sheared Mean Flows (26031)
Saeideh Banihashemi, Lynker at NOAA, Environmental Modeling Center, College Park, United States and James T Kirby Jr, University of Delaware, Center for Applied Coastal Research, Newark, United States
 
How the Wave-Current Interactions Are Modulated By the Horizontal Mixing inside a Rip System ? (4141)
Prof. Anne-claire Bennis, University of Lower Normandy, M2C laboratory, Caen, France, Franck Dumas, IFREMER, Dyneco/Physed, Plouzané, France, Fabrice Ardhuin, University of Bretagne Occidentale, CNRS, IFREMER, IRD, Plouzané, France and Bruno Blanke, Laboratoire d'Océanographie Physique et Spatiale (LOPS), Brest, France
 
Non-Hydrostatic Modelling of Waves and Currents over Subtle Bathymetric Features (6844)
Esther Gomes, Queen's University, Kingston, ON, Canada, Ryan P Mulligan, Queen's University, Civil Engineering, Kingston, ON, Canada and Jesse McNinch, US Army Corps of Engineers, Coastal and Hydraulics Laboratory, United States
 
Modeled and Observed Transitions Between Rip Currents and Alongshore Flows (7561)
Melissa Moulton1, Steve Elgar2, John C Warner3 and Britt Raubenheimer2, (1)National Center for Atmospheric Research, Boulder, United States, (2)Woods Hole Oceanographic Institution, Applied Ocean Physics & Engineering, Woods Hole, United States, (3)U.S. Geological Survey, Falmouth, United States
 
Current Measurements and Overwash Monitoring Using Tilt Current Meters in Three Coastal Environments (11105)
Nick S Lowell1, Christopher R Sherwood2, Thomas M DeCarlo3 and Jeff R Grant1, (1)Lowell Instruments LLC, Engineering, North Falmouth, MA, United States, (2)U.S. Geological Survey, Woods Hole Coastal and Marine Science Center, Woods Hole, United States, (3)Woods Hole Oceanographic Institution, Woods Hole, MA, United States
 
Quantifying transient rip current-driven exchange between the surfzone and inner shelf (28539)
Sutara H Suanda, Scripps Institution of Oceanography, La Jolla, United States and Falk Feddersen, Scripps Institution of Oceanography, La Jolla, CA, United States
 
Remote and In Situ Observations of Surfzone and Inner-Shelf Tracer Dispersion (9811)
Kai Hally-Rosendahl1, Falk Feddersen1, David Clark2 and Robert T Guza1, (1)Scripps Institution of Oceanography, La Jolla, CA, United States, (2)WHOI, Woods Hole, MA, United States
 
Modeling surf zone-inner shelf exchange: Interaction of rip currents and stratification (18079)
Nirnimesh Kumar, Scripps Institution of Oceanography, Integrative Oceanography Division, La Jolla, CA, United States and Falk Feddersen, University of California San Diego, Scripps Institution of Oceanography, La Jolla, United States
 
Surfzone alongshore advective accelerations: observations and modeling (15782)
Jeff Hansen1, Britt Raubenheimer2 and Steve Elgar2, (1)The University of Western Australia, School of Earth and Oceans, and UWA Oceans Institute, Crawley, Western Australia, Australia, (2)Woods Hole Oceanographic Institution, Applied Ocean Physics & Engineering, Woods Hole, United States
 
Liquid-bubble Interaction under Surf Zone Breaking Waves (18266)
Morteza Derakhti, Univ Delaware, Newark, United States and James T Kirby Jr, University of Delaware, Civil and Environmental Engineering, Newark, DE, United States
 
Surf zone, infragravity wave energy flux, and runup in extreme conditions (24621)
Julia W Fiedler, Scripps Institution of Oceanography, La Jolla, United States, Katherine L Brodie, US Army Corps of Engineers, Field Research Facility, Jacksonville, FL, United States, Jesse McNinch, US Army Corps of Engineers, Coastal and Hydraulics Laboratory, United States and Robert T Guza, Scripps Institution of Oceanography, La Jolla, CA, United States
 
Relating Surfzone Eddy Scales to the Eddy Diffusivity Using a Wave-resolving Model (25522)
Matthew S Spydell, University of California San Diego, Scripps Institution of Oceanography, La Jolla, United States
 
Surfzone vorticity in the presence of extreme bathymetric variability (27495)
David Clark1, Steve Elgar2 and Britt Raubenheimer2, (1)WHOI, Woods Hole, MA, United States, (2)Woods Hole Oceanographic Institution, Applied Ocean Physics & Engineering, Woods Hole, United States
 
Drones at the Beach - Surf Zone Monitoring Using Rotary Wing Unmanned Aerial Vehicles (16153)
Ronald Brouwer1, Matthieu Andreas de Schipper1, Patrick Rynne2, Fiona Graham2, Ad Reniers3 and James H MacMahan4, (1)Delft University of Technology, Hydraulic Engineering, Delft, Netherlands, (2)University of Miami, Miami, FL, United States, (3)Delft University of Technology, Delft, Netherlands, (4)Naval Postgraduate School, Monterey, United States
 
NUMERICAL AND LABORATORY INVESTIGATION OF TURBULENCE DISSIPATION IN THE SWASH ZONE (19737)
Jose Carlos Pintado-Patino, Universidad Nacional Autónoma de México, Institute of Engineering, Sisal, Mexico, Alec Torres-Freyermuth, UNAM National Autonomous University of Mexico, Mexico City, Mexico and Jack Anthony Puleo, University of Delaware, Civil, Construction, and Environmental Engineering, Newark, United States
 
Numerical simulation of two-phase flow for wave propagation/breaking near submerged and vertical breakwaters (22660)
Roham Bakhtyar, Univ of North Carolina, Chapel Hill, NC, United States; US Army Corps of Engineers, Coastal and Hydraulics Laboratory, Jacksonville, FL, United States, Christopher E Kees, US Army Corps of Engineers, Coastal and Hydraulics Laboratory, Vicksburg, MS, United States, Matthew W Farthing, US Army Corps of Engineers, Vicksburg, MS, United States and Cass T Miller, University of North Carolina at Chapel Hill, Environmental Science and Engineering, Chapel Hill, NC, United States
 
Climatic Signals in Beach Volume Measurements from 19 Intermediate Embayed Beaches (18796)
Karin R Bryan, University of Waikato, School of Science, Hamilton, New Zealand, Giovanni Coco, The University of Auckland, School of Environment, Santander, New Zealand, Brice Blossier, MARUM - University of Bremen, Bremen, Germany, R Keith Smith, Private Consultant, Hamilton, New Zealand and Andrew Wood, CKL Surveyors, Hamilton, New Zealand
 
Nearshore Coastal Dynamics on a Sea-Breeze Dominated Micro-Tidal Beach (NCSAL) (10287)
Alec Torres-Freyermuth1, Jack Anthony Puleo2, Amaia Ruiz De Alegria-Arzaburu3, Nick Z. Fang4, Tonatiuh Mendoza1, Jose Carlos Pintado-Patino5, Aline Pieterse6, Patricia Chardon-Maldonado7, Nick Robert DiCosmo6, Nina Wellman4, Hector Garcia-Nava8, Leonardo Palemón-Arcos5, Tiffany Roberts9, José López-González5, Maurcio Bravo5, Elena Ojeda1, Gabriela Medellín1, Christian Mario Appendini10, Bernardo Figueroa5, Mariana González-Leija11, Cecilia Enriquez12, Adrián Pedrozo-Acuña13 and Paulo Salles5, (1)Universidad Nacional Autónoma de México, Institute of Engineering, Sisal, YC, Mexico, (2)University of Delaware, Civil, Construction, and Environmental Engineering, Newark, United States, (3)Univerisdad Autónoma de Baja California, Instituto de Investigaciones Oceanológicas, Ensenada, Mexico, (4)Texas A & M University at Galveston, Galveston, TX, United States, (5)Universidad Nacional Autónoma de México, Institute of Engineering, Sisal, Mexico, (6)Univ of DE-Civil & Envir Engrg, Newark, DE, United States, (7)Caribbean Coastal Ocean Observing System, Puerto Rico, United States, (8)Univerisdad Autónoma de Baja California, Ensenada, BJ, Mexico, (9)Florida Atlantic University, Boca Raton, FL, United States, (10)Universidad Nacional Autónoma de México, LIPC-SISAL, Sisal, YC, Mexico, (11)Axis Ingeniería, Merida, Mexico, (12)Universidad Nacional Autónoma de México, Facultad de Ciencias, Sisal, YC, Mexico, (13)Universidad Nacional Autónoma de México, Institute of Engineering, Mexico, Mexico
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