CP009
Open Session on Tides and Coastal Flooding
Session ID#: 253701
Session Description:
Tides are fundamental to many geophysical processes, driving ocean mixing, contributing to coastal erosion and sediment transport, and influencing ocean biogeochemistry and ecosystems. Accurate tidal prediction is also important for port operations, coastal planning, and public safety. However, tides exhibit strong spatial variability, and methods for their observation, modeling, and prediction continue to evolve. Coastal flooding often results from a combination of large tides and non-tidal sea level forcing factors such as storm surges and waves. These flood events are typically characterized as extreme water levels, and depending on tidal and non-tidal contributions, events can range from minor high tide flooding to major, often severe and damaging, extremes. Advancing our understanding of both tidal and non-tidal processes is essential to reduce uncertainty in measurement and prediction and build coastal flood resilience.
Submissions are invited on any aspect of the observation and prediction of tides and coastal sea level extremes, including estuarine dynamics, storm surges, waves, tsunamis and compound flooding events. Observational, modelling and theoretical studies are welcome along with contributions on technology innovation and flood resilience. Submissions that leverage data-driven methods, such as machine learning, to enable novel or improved observations and predictions are especially encouraged.
Co-Sponsor(s):
Index Terms:
4313 Extreme events [NATURAL HAZARDS]
4560 Surface waves and tides [OCEANOGRAPHY: PHYSICAL]
4564 Tsunamis and storm surges [OCEANOGRAPHY: PHYSICAL]
4594 Instruments and techniques [OCEANOGRAPHY: PHYSICAL]
Primary Chair: Angela Hibbert, National Oceanography Centre, Liverpool, United Kingdom
Co-chairs: Greg Dusek, NOAA Camp Springs, Camp Springs, United States, Joanne Williams, National Oceanography Center, Liverpool, United Kingdom and Michael Hart-Davis, Technical University of Munich, Deutsches Geodätisches Forschungsinstitut (DGFI-TUM), Munich, Germany
How does tide-surge-river interaction affect estuarine extreme water levels? (1863962)
Xiaoyan Wei, National Oceanography Centre, Marine Physics and Ocean Climate, Liverpool, United Kingdom, Yanwen Xu, Hohai University, Nanjing, China and Laurent Amoudry, National Oceanography Centre, Liverpool, United Kingdom
Floods on a Schedule: Predictable Timing in Tidal Coastal Systems (1907395)
Joris Beemster, Wageningen University & Research, Environmental Sciences, Wageningen, Netherlands, Stefan A Talke, California Polytechnic State University, Department of Civil and Environmental Engineering, San Luis Obispo, California, United States, Ivan David Haigh, University of Southampton, Ocean and Earth Science, Southampton, United Kingdom, Ben Hague, Bureau of Meteorology, Melbourne, VIC, Australia, Dirk Sebastiaan van Maren, Delft University of Technology, Deltares, Delft, Netherlands and Ton Hoitink, Wageningen University, Environmental Sciences, Wageningen, Netherlands
Idealized Modelling of Compound Flooding Effects in Estuaries with Differing Channel Geometries and Bathymetries (2008296)
Constantinos Matsoukis, National Oceanography Center, Marine Physics and Ocean Climate, Liverpool, United Kingdom, Xiaoyan Wei, National Oceanography Centre, Marine Physics and Ocean Climate, Liverpool, United Kingdom and Laurent Amoudry, National Oceanography Centre, Liverpool, United Kingdom
Total Water Level Prediction and Validation along Louisiana Barrier Islands for Hurricane Ida (2021) (2010564)
Johnathan Woodruff, USGS Coastal and Marine Science Center St. Petersburg, St Petersburg, United States, Mark L Buckley, USGS Coastal and Marine Science Center St. Petersburg, St Petersburg, DC, United States and Margaret L Palmsten, U.S. Geological Survey, St. Petersburg Coastal and Marine Science Center, St Petersburg, FL, United States
Compound Minor Floods and the Role of Discharge in the Delaware River Estuary (2015623)
Kelly McKeon, Massachusetts Institute of Technology, Cambridge, United States; Woods Hole Oceanographic Institution, Geology and Geophysics, Woods Hole, United States and Christopher G Piecuch, Woods Hole Oceanographic Institution, Woods Hole, MA, United States
Extratropical Storms leading to Extreme Sea Levels on the East Coast of North America: Drivers, Properties and Impacts (2015659)
Pierre Chabert, Brown University, Providence, RI, United States, Prof. Emanuele Di Lorenzo, PhD, Brown University, Earth, Environmental, and Planetary Sciences, Providence, United States, James M Pringle, University of New Hampshire Main Campus, Durham, NH, United States and Baylor Fox-Kemper, Brown University, Department of Earth, Environmental and Planetary Sciences, Providence, RI, United States
The Influence of ENSO on Impactful Sea Levels Around Australia (2017067)
Jane Nguyen1,2, Ben Hague1,3 and Dr. Shayne McGregor4,5, (1)Monash University, Clayton, VIC, Australia, (2)21st Century Weather ARC Centre of Excellence, Clayton, VIC, Australia, (3)Bureau of Meteorology, Melbourne, VIC, Australia, (4)Monash University, School of Earth, Atmosphere and Environment, Melbourne, VIC, Australia, (5)ARC Centre of Excellence for Weather of the 21st century, Melbourne, VIC, Australia
Characterizing Sea Level Variability and Future Inundation Risks along the Central Vietnamese Coast (2022641)
Javier Zavala-garay1, John Wilkin2, Peter Rogowski3, Thuy Ba Nguyen4 and Hien Xuan Nguyen4, (1)Rutgers University New Brunswick, New Brunswick, NJ, United States, (2)Rutgers University, New Brunswick, NJ, United States, (3)University of California San Diego, Scripps Institution of Oceanography, La Jolla, United States, (4)Viet Nam Meteorological and Hydrological Administration, Hanoi, Vietnam
How Far Inland Does the Sea Rise? Investigating Estuary-River Transitions Under Sea Level Rise. (2022662)
Serena Blyth Lee1, Kees Nederhoff2, Stendert Laan2, Ming Li3 and Stefan A Talke1, (1)California Polytechnic State University, Department of Civil and Environmental Engineering, San Luis Obispo, California, United States, (2)Deltares USA, Silver Spring, United States, (3)Univ of Maryland Ctr for Env., Cambridge, United States
Toward improved prediction of chronic flooding in Guadeloupe through sea-level reconstruction and eddy analysis (2024612)
Rémy Asselot1, Rémi Thiéblemont2, Déborah Idier2 and Thibault Laigre3, (1)BRGM, 24 avenue Léonard de Vinci, F-33600 Pessac, France, Pessac, France, (2)BRGM, 3 avenue Claude Guillemin, F-45060 Orléans, France, Orléans, France, (3)BRGM, 5 Rue Sainte-Anne, F-97404 Saint-Denis, La Réunion, France, Saint-Denis, France
Polar Ocean Tides revisited Again Again – from CRYOSAT to SWOT (2026102)
Ole Baltazar Andersen1, Michael Hart-Davis2, Rasmus Lørum Arildsen3 and Maria Pisareva2, (1)Technical University of Denmark, Geodesy and Earth Observation, Kgs. Lyngby, Denmark, (2)Technical University of Munich, Deutsches Geodätisches Forschungsinstitut (DGFI-TUM), Munich, Germany, (3)Technical University of Denmark - Space, Kongens Lyngby, Denmark
Using Stochastically Generated Skewed Distributions to Represent Nontidal Residual Water Levels for High Tide Flooding Predictions and Projections (2028277)
Paige A Hovenga1, Matthew Newman2, John Albers2, William Sweet3, Greg Dusek4, Tongtong Xu5, John A Callahan6, Sang-Ik Shin7 and Gilbert P Compo5, (1)NOAA Physical Sciences Laboratory, Boulder, United States, (2)NOAA Physical Sciences Laboratory, Boulder, CO, United States, (3)NOAA National Ocean Service, Silver Spring, United States, (4)NOAA Camp Springs, Camp Springs, United States, (5)University of Colorado CIRES and NOAA Physical Sciences Laboratory, Boulder, United States, (6)NOAA National Ocean Service and Ocean Associates Inc., Silver Spring, MD, United States, (7)University of Colorado CIRES and NOAA Physical Sciences Laboratory, Boulder, CO, United States
Filling the Gaps Between Tide Gauges: Demonstrating High-Resolution Daily High Tide Flooding Predictions Using NOAA's Coastal Ocean Reanalysis (2029947)
Matthew P. Conlin1, Greg Dusek2, John A Callahan3, John Ratcliff1, Karen Kavanaugh4, William Brooks4, Blake Waring5, Analise Keeney4, William Sweet6 and Matthew J Widlansky7, (1)NOAA National Ocean Service and Ocean Associates Inc., Arlington, VA, United States, (2)NOAA National Ocean Service, Center for Operational Oceanographic Products and Services, Silver Spring, United States, (3)NOAA National Ocean Service and Ocean Associates Inc., Silver Spring, MD, United States, (4)NOAA National Ocean Service, Silver Spring, MD, United States, (5)NOAA National Ocean Service | Consolidated Safety Services Inc., Fairfax, VA, United States, (6)NOAA/NOS, Silver Spring, United States, (7)University of Hawaii at Manoa, CIMAR, Honolulu, HI, United States
NOAA’s Next-generation Prediction System for Daily High Tide Flooding Risks on Subseasonal to Annual Timescales (2031443)
Matthew Newman1, Paige A Hovenga1, Tongtong Xu2, Karen Kavanaugh3, John Albers1, Yan Wang2, Sang-Ik Shin4, Greg Dusek5, John A Callahan6 and William Sweet7, (1)NOAA Physical Sciences Laboratory, Boulder, CO, United States, (2)University of Colorado CIRES and NOAA Physical Sciences Laboratory, Boulder, United States, (3)NOAA National Ocean Service, Silver Spring, MD, United States, (4)University of Colorado CIRES and NOAA Physical Sciences Laboratory, Boulder, CO, United States, (5)NOAA Camp Springs, Camp Springs, United States, (6)NOAA National Ocean Service and Ocean Associates Inc., Silver Spring, MD, United States, (7)NOAA/NOS, Silver Spring, United States
Multidecadal Downscaling of Sea Surface Height for the U.S. Northeast, Southeast, and Gulf Coasts for High Tide Flooding Prediction (2031470)
Laura McGee1, Matthew Newman1, Sang-Ik Shin2, John Albers1, Paige A Hovenga1, John A Callahan3, Matthew Conlin4, Saeed Moghimi5, Felicio Cassalho5 and Yinglong J Zhang6, (1)NOAA Physical Sciences Laboratory, Boulder, CO, United States, (2)University of Colorado CIRES and NOAA Physical Sciences Laboratory, Boulder, CO, United States, (3)NOAA National Ocean Service and Ocean Associates Inc., Silver Spring, MD, United States, (4)NOAA National Ocean Service and Ocean Associates Inc., Arlington, VA, United States, (5)Coast Survey Development Laboratory, National Ocean Service, NOAA, Silver Spring, MD, United States, (6)Virginia Institute of Marine Science, Gloucester Point, VA, United States
A Momentum Balance Approach to Characterizing Compound Flooding Effects (2031717)
Ryan Chiu1, Yingzhong Lou2, Wuming Ni3, Christie Hegermiller4 and Alex R Horner-Devine2, (1)University of Washington Seattle Campus, Civil and Environmental Engineering, Seattle, United States, (2)University of Washington Seattle Campus, Department of Civil & Environmental Engineering, Seattle, United States, (3)University of Washington, Civil & Environmental Engineering, Seattle, United States, (4)University of Washington, Seattle, United States
Climate-tide coupling around Hawaiʻi with a Pacific-wide perspective (2032269)
Adam Thomas Devlin, University of Hawaii at Manoa, Honolulu, HI, United States, Philip R Thompson, CIMAR, University of Hawaiʻi at Mānoa, Department of Oceanography, Honolulu, United States, Edward D Zaron, Oregon State University, College of Earth, Ocean, and Atmospheric Sciences, Corvallis, United States and David Jay, Portland State University, Civil & Environmental Engineering, Portland, United States
Deep‑Learning Emulation of Reanalysis‑Like Typhoon Forcing Fields for Storm Surge Modeling in Korea (2032392)
Sung-Hwan Park, Jungwoon CHOI, Sang-Hun Jeong, NAM-Hoon KIM, Ki-Young Heo, Deoksu Kim, Dabin Lee, Jin-Yong CHOI and Jae-IL Kwon, Korea Institute of Ocean Science & Technology, Marine Natural Disaster Research Department, Busan, South Korea
Changes in tidal asymmetry in the Ems estuary: impact on residual coarse sediment transport and mean sea level (2033636)
Koen Haakman1, Cornelis Slobbe1 and Martin Verlaan2,3, (1)Delft University of Technology, Delft, Netherlands, (2)Deltares, Delft, Netherlands, (3)Delft University of Technology, Mathematical Physics, Delft, Netherlands
Integrated forecasting tools for climate adaptation in coastal tourism and marine operations: the ALISEO project experience in the Ligurian Sea (2034521)
Martina Lagasio1, Stefania Ciliberti2, Marcos Sotillo2, Massimo Milelli1, Paola Tepsich1, Antonio Parodi1 and Manuel Garcia-Leon2, (1)CIMA Research Foundation, Savona, Italy, (2)Nologin Oceanic Weather Systems, Santiago de Compostela, Spain
Impact of Anthropogenic Sea Surface Warming on Storm Surge and Coastal Flooding During Cyclone Mocha (2035331)
Diego Vega Giménez1, Angel Amores1,2, Daniel Argueso2, Marta Marcos1,2 and Ananda Pascual1, (1)Mediterranean Institute for Advanced Studies (CSIC-UIB), Esporles, Spain, (2)University of the Balearic Islands, Palma de Mallorca, Spain
Advancing meteotsunami prediction with high-frequency coupled models at km-scale. (2036754)
Nefeli Makrygianni1, Segolene Berthou2, Juan Manuel Castillo2, David L.A. Flack1, Huw Lewis3, Cindy Lebeaupin Brossier4, Diego Bruciaferri5, Jonathan Beuvier6, Emiliano Renzi7, Clare O'Neill1 and Frederic Dias8, (1)Met Office, Exeter, United Kingdom, (2)Met Office Hadley center for Climate Change, Exeter, United Kingdom, (3)Met Office, UK, Exeter, United Kingdom, (4)Météo France, Toulouse, France, (5)Plymouth University, Faculty of Science and Engineering, Plymouth, United Kingdom, (6)Météo-France Toulouse, Toulouse Cedex 01, France, (7)Northumbria University, School of Engineering, Physics and Mathematics, Newcastle-upon-Tyne, United Kingdom, (8)University College Dublin, Dublin, Ireland
A Global Regionalized Non-Asymptotic Extreme-Value Framework for Estimating Present and Future Storm Surge Extremes (2037181)
Pietro Devò1, Thomas Wahl2 and Marco Marani1, (1)University of Padova, Department of Civil, Environmental and Architectural Engineering, Padova, Italy, (2)Department of Civil, Environmental, and Construction Engineering & National Center for Integrated Coastal Research, University of Central Florida, Orlando, United States
Machine Learning Feature Engineering for Tropical Cyclone Storm Surge Emulation. (2037734)
Hamish Wilkinson1,2, Paul D Bates1,2, Chris Lucas1, Ivan David Haigh3, Niall Quinn1 and Tom Collings1, (1)Fathom, Bristol, United Kingdom, (2)University of Bristol, School Of Geographical Sciences, Bristol, United Kingdom, (3)University of Southampton, Ocean and Earth Science, Southampton, United Kingdom
A Hybrid Modeling Framework for Estuarine Compound Flooding Prediction: Case Study in Santoña, Spain (2038035)
Jared Ortiz-Angulo Cantos1, Paula Camus2, Beatriz Perez-Diaz3, Laura Cagigal2, Manuel Zornoza3, Sonia Castanedo Bárcena2 and Fernando J. Mendez2, (1)University of Cantabria, GeoOcean, Santander, Spain, (2)Universidad de Cantabria, GeoOcean, Santander, Spain, (3)University of Cantabria, Ciencias y Tecnicas del Agua y del Medio Ambiente, Santander, Spain
Measuring and modeling compound flooding in the lower Willapa River (2038041)
Alex R Horner-Devine1, Christie Hegermiller2, Ryan Chiu3,4, Wuming Ni5, Ian Miller6, Sanpisa Sritrairat6, Jackson Blalock7 and christie hegermiller, (1)University of Washington Seattle Campus, Department of Civil & Environmental Engineering, Seattle, United States, (2)University of Washington, Seattle, United States, (3)Moss Landing Marine Laboratories, Moss Landing, CA, United States, (4)University of Washington Seattle Campus, Civil and Environmental Engineering, Seattle, United States, (5)University of Washington, Civil & Environmental Engineering, Seattle, United States, (6)Washington Sea Grant, Seattle, United States, (7)Pacific Conservation District, South Bend, United States
Full-Frequency Wave Observations and Evaluation of Coastal Hazards in Lake Michigan (2038795)
Alexa Yeo1, Eric J Anderson2, Shelby Brunner3, Hayden Henderson4, Laura Ann Fiorentino5, Chin Wu6, Josh Anderson6 and Guy Meadows7, (1)Colorado School of Mines, Golden, United States, (2)Colorado School of Mines, Civil & Environmental Engineering, Golden, CO, United States, (3)Great Lakes Observing System, Ann Arbor, United States, (4)Michigan Technological University, Houghton, United States, (5)NOAA/CO-OPS, NOAA/CO-OPS, Chesapeake, VA, United States, (6)University of Wisconsin Madison, Madison, United States, (7)Michigan Technological University, Great Lakes Research Center, Houghton, United States
Hybrid Methods for Efficient Assessment of Coastal Flooding Hazards in a Warming Climate (2040651)
Hamed Moftakhari1, Soheil Radfar2, MD Khairul Amin3, Faezeh Maghsoodifar2, Georgios Boumis4 and Hamid Moradkhani2, (1)University of Alabama, Tuscaloosa, AL, United States, (2)The University of Alabama, Center for Complex Hydrosystems Research, Tuscaloosa, United States, (3)The University of Alabama, Department of Civil, Construction, and Environmental Engineering, Tuscaloosa, United States, (4)University of Maine, Department of Civil and Environmental Engineering, Orono,, ME, United States
From Sparse Observations to Continuous Records: Data-Driven Reconstruction of Estuarine Water Levels (2040739)
Pascal Matte, Environment and Climate Change Canada, Meteorological Research Division, Quebec, QC, Canada, Silvia Innocenti, Environment and Climate Change Canada, Meteorological Research Division, Quebec City, QC, Canada, Marc Simard, Jet Propulsion Laboratory, California Institute of Technology, Pasadena, United States and Alexandra Christensen, Jet Propulsion Laboratory, Suborbital Radar Science and Engineering, Pasadena, United States
Quantifying the contribution of mesoscale SSH features to flooding of islands in the Pacific Ocean (2041251)
Anup Nambiathody1, Angelica R Rodriguez1, Philip R Thompson2, Mark A Merrifield3, Matthew R Mazloff4, Dimitris Menemenlis5 and Benjamin Hamlington1, (1)Jet Propulsion Laboratory, California Institute of Technology, Pasadena, United States, (2)CIMAR, University of Hawaiʻi at Mānoa, Department of Oceanography, Honolulu, United States, (3)Scripps Institution of Oceanography, La Jolla, United States, (4)Scripps Institution of Oceanography, UCSD, La Jolla, United States, (5)San Jose State University, San Jose, United States
Attribution of High-Water-Level Events in the St. Lawrence River Estuary: Contributions of Tidal, Hydrologic, and Meteorological Processes to the Occurrence and Characteristics of Water-Level Extremes. (2041526)
Silvia Innocenti1, Pascal Matte2 and Marianne Fortier1, (1)Environment and Climate Change Canada, Quebec, Canada, (2)Environment and Climate Change Canada, Government of Canada, Quebec, Canada
GreenSurge 2.0: A Scalable and Efficient Additive model for Storm Surge Modeling (2042210)
Etienne Faugere1, Mrs. Beatriz Pérez Díaz1, Laura Cagigal1, Paula Camus1, Valvanuz Fernandez1, Javier Tausia1, Gözde Güney Doğan2, Jose A. A. Antolínez3, Sonia Castanedo Bárcena1 and Fernando J. Mendez1, (1)Universidad de Cantabria, GeoOcean, Santander, Spain, (2)Delft University of Technology, Delft, Netherlands, (3)Delft University of Technology, Hydraulic Engineering, Delft, Netherlands
US Coastal Flood Observations from the Surface Water and Ocean Topography Satellite (2043497)
Angelica R Rodriguez1, Iury Tercio Simoes-Sousa2, Benjamin Hamlington1, J. Thomas Farrar3 and Yu Gao4, (1)Jet Propulsion Laboratory, California Institute of Technology, Pasadena, United States, (2)Woods Hole Oceanographic Institution, Woods Hole, MA, United States, (3)Woods Hole Oceanographic Inst, Physical Oceanography, Woods Hole, United States, (4)WHOI, Woods Hole, United States
The effect of land surface parameters on coastal inundation using a coupled hydraulic and hydrodynamic approach: A case study over Indian major river basin (2044926)
Pawan Tiwari, Indian Institute of Technology Delhi, New Delhi, India, A D Rao, Indian Institute of Technology Delhi, Delhi, India and Vimlesh Pant, Indian Institute of Technology Delhi, CENTRE FOR ATMOSPHERIC SCIENCES, New Delhi, India
An Eulerian and Lagrangian Coupled Approach to Examining Circulation in a Semi-Enclosed Basin (2047088)
Benjamin Middour, University of North Carolina at Wilmington, Physics and Physical Oceanography, Wilmington, United States, Derek Jeffrey Grimes, University of North Carolina Wilmington, Department of Physics and Physical Oceanography, Wilmington, United States, Katherine Anarde, North Carolina State University, Raleigh, United States and Elizabeth Farquhar, University of North Carolina at Wilmington, Wilmington, United States
Ice impacts on tides in semi-enclosed basins, Cook Inlet, Alaska (2048553)
Steven Louis Dykstra1, Henk M Schuttelaars2, Bradley van Hooff2 and Mary Pontbriand3, (1)University of Alaska Fairbanks, Fairbanks, United States, (2)Delft University of Technology, Delft Institute of Applied Mathematics, Delft, Netherlands, (3)University of Alaska Fairbanks, Oceanography, Fairbanks, United States