CC025
Tides through time and space: from deep time to the future ocean

Session ID#: 255942

Session Description:
POSTER-ONLY SESSION

Ocean tides are fundamental to Earth's environmental systems, sustaining marine ecosystems, driving sediment transport, influencing coastal morphology, and affecting Earth's rotation. Tidal dynamics have considerably changed over geological time scales in response to continental rearrangement, sea level changes, and the evolving Earth-Moon system. Understanding tides across time is critical for reconstructing paleoenvironments, interpreting the sedimentary record, understanding blue carbon and biogeochemical cycles, and anticipating future coastal and ocean changes.

This session aims to convene a diverse group of researchers to explore and discuss factors influencing tidal dynamics across time and space. Understanding the drivers of tidal change at all scales is essential for developing effective policy and management strategies for coastal resilience and sustainable ocean use in a changing climate.

This session invites posters from researchers working on:

  1. Numerical modelling of tidal systems,
  2. Tidal modulation driven by sea-level change,
  3. Tidal sediment dynamics and depositional systems, including tidal proxies and carbon sequestration in tidal deposits,
  4. Effects of tides and related processes on other components of the Earth System,
  5. Climate-induced tidal changes,
  6. Deep-water tidal processes, including tidal conversion and internal tides,
  7. Observations of the ocean tide, and derived quantities (e.g., surface deformation and gravity field) including  remote sensing and in-situ measurements.
Co-Sponsor(s):
  • Physical Oceanography: Mesoscale and Larger -
  • Physical Oceanography: Mesoscale and Smaller -
Index Terms:

4255 Numerical modeling [OCEANOGRAPHY: GENERAL]
4544 Internal and inertial waves [OCEANOGRAPHY: PHYSICAL]
4560 Surface waves and tides [OCEANOGRAPHY: PHYSICAL]
4999 General or miscellaneous [PALEOCEANOGRAPHY]
Student/Early Career Chair:  Roman Sulzbach, Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences, Potsdam, Germany; Institute of Meteorology, Freie Universität Berlin, Berlin, Germany, Berlin, Germany
Primary Chair:  Anthony Chen, University of Michigan Ann Arbor, Ann Arbor, MI, United States
Co-chairs:  Sophie Ward, Bangor University, Bangor, United Kingdom and Roman Sulzbach, Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences, Potsdam, Germany; Institute of Meteorology, Freie Universität Berlin, Berlin, Germany, Berlin, Germany
 
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Alexis Sluder, IBSS Contractor to NOAA/CO-OPS, Silver Spring, United States
 
Convolution Based Self Attraction and Loading in MOM6 (1903391)
Anthony Chen, University of Michigan Ann Arbor, Ann Arbor, MI, United States, Brian K Arbic, University of Michigan, Earth and Environmental Sciences, Ann Arbor, MI, United States, Robert Krasny, Univ of MI-Mathematics, Ann Arbor, United States and He Wang, University Corporation for Atmospheric Research, Boulder, United States
 
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Christian Kenwright, University of Southampton, Southampton, United Kingdom, Ivan David Haigh, University of Southampton, Ocean and Earth Science, Southampton, United Kingdom, Joanne Williams, National Oceanography Center, Liverpool, United Kingdom, Duo Chan, University of Southampton, School of Ocean and Earth Science, Southampton, United Kingdom, Robert Nicholls, University of East Anglia, Norwich, United Kingdom, Steve McFarland, Scottish Environment Protection Agency, East Kilbride, United Kingdom and Marc Becker, Scottish Environment Protection Agency, Glasgow, United Kingdom
 
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Hugo Plombat1, Brian K Arbic2, Dale H Boggs3, Dimitris Menemenlis4, Lana Opel5, Richard Ray6, Michael Schindelegger5 and James G Williams3, (1)University of Michigan, Earth and Environmental Sciences, Ann Arbor, United States, (2)University of Michigan, Earth and Environmental Sciences, Ann Arbor, MI, United States, (3)Jet Propulsion Laboratory, Pasadena, United States, (4)San Jose State University, San Jose, United States, (5)University of Bonn, Institute of Geodesy and Geoinformation, Bonn, Germany, (6)NASA Goddard Space Flight Center, Geodesy & Geophysics Lab, Greenbelt, United States
 
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Dr. Keisuke Ariyoshi1, Eiichiro Araki2, Hiroyuki Matsumoto1, Yuya Machida3, Shuhei Tsuji1, Shuichiro Yada4, Daiki Hizen5 and Takane Hori4, (1)JAMSTEC Japan Agency for Marine-Earth Science and Technology, Kanagawa, Japan, (2)Japan Agency for Marine-Earth Science and Technology (JAMSTEC), Research Institute for Marine Geodynamics, Yokosuka, Japan, (3)Japan Agency for Marine-Earth Science and Technology (JAMSTEC), Research Institute for Marine Geodynamics, Yokohama, Japan, (4)Japan Agency for Marine-Earth Science and Technology (JAMSTEC), Yokohama, Japan, (5)JAMSTEC Japan Agency for Marine-Earth Science and Technology, Research Institute for Marine Geodynamics, Kanagawa, Japan
 
Tides and Sea Level Rise Revisited (2017846)
Khalid Bukhari, Bangor University, School of ocean science, Bangor, United Kingdom and Mattias Green, Bangor University, School of Ocean Sciences, Bangor, United Kingdom
 
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Niraj Prasad, Newcastle University, School of Mathematics, Physics and Satistics, Tyne and Wear, United Kingdom, Alex Doak, University of Bath, Bath, United Kingdom, Ricardo Barros, University of Loughborough, Loughborough, United Kingdom, Paul Milewski, Pennsylvania State University Main Campus, University Park, United States and Magda Carr, Newcastle University, Newcastle, United Kingdom
 
The Amplified Glacial Tidal Regime: Sensitivity and Implications for Paleo-Tide Levels and Tidal Dissipation (2042046)
Roman Sulzbach, Volker Klemann and Henryk Dobslaw, GFZ Helmholtz Centre for Geosciences, Potsdam, Germany
 
Analysis of Long-term Trends and Variability in the Mean Tidal Range Along the Coastlines of the United States (2048210)
Kayla Washington, Tulane University, River-Coastal Science and Engineering, New Orleans, United States