DFD/GPC Focus Session: Planetary Flows in Climate
FOCUS · M02 · ID: 22979
Presentations
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Submarine melting of glaciers and its effect on climate
ORAL · Invited
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Publication: 1. McConnochie C.D., Cenedese C. and McElwaine J.N., Entrainment into particle-laden turbulent plumes. Phys. Rev. Fluids. (Submitted 6/2021)<br>2. Hester E.W., McConnochie C.D. *, Cenedese C., Couston L-A and Vasil G., 2021 Aspect ratio affects iceberg melting. Phys. Rev. Fluids, 6(2), 023802.<br>3. Meroni A.N., McConnochie C., Cenedese C., Sutherland B. and Snow K., 2019. Nonlinear influence of Earth's rotation on iceberg melting. J. Fluid Mech., 858, 832-851. <br>4. Ezhova E., Cenedese C. and Brandt L., 2018. Dynamics of Three-Dimensional Turbulent Wall Plumes and Implications for Estimates of Submarine Glacier Melting. J. Phys. Oceanogr., 48, 1941–1950.<br>5. FitzMaurice, A., Cenedese C. and Straneo F., 2018. A Laboratory Study of Iceberg Side Melting in Vertically Sheared Flows. J. Phys. Oceanogr., 48, 1367–1373.<br>6. Ezhova E., Cenedese C. and Brandt L., 2017. Dynamics of a turbulent buoyant plume in a stratified fluid: modelling subglacial discharge in Greenland's fjord¬s. J. Phys. Oceanogr., 47, 2611–2630. <br>7. FitzMaurice, A., Cenedese C. and Straneo F., 2017. Nonlinear response of iceberg side melting to ocean currents. Geophys. Res. Lett., 44, 5637–5644.<br>8. FitzMaurice A., Straneo F., Cenedese C. and Andres M., 2016. Effect of a Sheared Flow on Iceberg Motion and Melting. Geophys. Res. Lett., 43, 12520–12527. <br>9. Mankoff K.D., Straneo F., Cenedese C., Das S.B., Richards C.G. and Singh H., 2016. Structure and Dynamics of a Subglacial Plume in a Greenland Fjord. J. Geophys. Res., 121, doi:10.1002/2016JC011764. <br>10. Cenedese C. and Gatto V.M., 2016. Impact of a Localized Source of Subglacial Discharge on the Heat Flux and Submarine Melting of a Tidewater Glacier: A Laboratory Study. J. Phys. Oceanogr., 46, 3155–3163. <br>11. Cenedese C. and Gatto V.M., 2016. Impact of Two Plumes' Interaction on Submarine Melting of Tidewater Glaciers: A Laboratory Study. J. Phys. Oceanogr., 46, 361–367. <br>12. Straneo F. and Cenedese C., 2015. Dynamics of Greenland's glacial fjords and their role in climate. Annual Review of Marine Science, 7 (1), doi:10.1146/annurev-marine-010213-135133.
Presenters
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Claudia Cenedese
Woods Hole Ocean Inst
Authors
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Claudia Cenedese
Woods Hole Ocean Inst
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Granular flow decoherence precedes failure of glacial ice mélange
ORAL
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Publication: Cassotto et al., Granular decoherence precedes ice mélange failure and glacier calving at Jakobshavn Isbræ, Nature Geoscience 14, 417-422 (2021).
Presenters
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Justin C Burton
Emory University
Authors
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Justin C Burton
Emory University
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Ryan Cassotto
CIRES, University of Colorado, Boulder
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Jason Amundson
University of Alaska, Southeast
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Mark Fahnestock
University of Alaska, Fairbanks
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Martin Truffer
University of Alaska, Fairbanks
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Nandish Vora
Emory University
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Kavinda Nissanka
Emory University
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Joshua Mendez Harper
University of Oregon
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Marc Guasch
Emory University
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Inferring flow law of ice shelves using physics-informed neural networks
ORAL
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Presenters
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Yongji Wang
Princeton University
Authors
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Yongji Wang
Princeton University
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Elijah Pomerantz
Princeton University
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Charlie Cowen-Breen
Princeton University
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Ming-Ruey Chou
Princeton University
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Ching-Yao Lai
Princeton University
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A thermomechanical model for frost heave and subglacial frozen fringe
ORAL
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Presenters
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Colin R Meyer
Dartmouth College
Authors
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Colin R Meyer
Dartmouth College
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Christian Schoof
University of British Columbia
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Alan W Rempel
University of Oregon
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Deriving scaling laws for extreme weather events using the Buckingham-PI theorem
ORAL
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Publication: Earlier results are published in <br>Nabizadeh, E., Hassanzadeh, P., Yang, D. and Barnes, E.A., 2019. Size of the atmospheric blocking events: Scaling law and response to climate change. Geophysical Research Letters, 46(22), pp.13488-13499.
Presenters
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Pedram Hassanzadeh
Rice University
Authors
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Pedram Hassanzadeh
Rice University
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Ebrahim Nabizadeh
Rice University
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Nonlinear generation of long waves and the reversal of eddy momentum fluxes in a two-layer quasi-geostrophic model
ORAL
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Publication: Hsieh, T.-L., C.-Y. Chang, I. M. Held, and P. Zurita-Gotor, Journal of the Atmospheric Sciences. Submitted.
Presenters
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Tsung-Lin Hsieh
Authors
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Tsung-Lin Hsieh
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Chiung-Yin Chang
University of Chicago
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Isaac M Held
Princeton University
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Pablo Zurita-Gotor
Universidad Complutense de Madrid, and Instituto de Geociencia, Centro Mixto del Consejo Superior de Investigaciones Científicas
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Large-scale organization development in precipitating shallow cumulus convection
ORAL
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Presenters
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Oumaima Lamaakel
University of Connecticut
Authors
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Oumaima Lamaakel
University of Connecticut
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Georgios Matheou
University of Connecticut
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Global Kinetic Energy Content of Oceanic Scales from Satellites and Models
ORAL
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Presenters
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Benjamin A Storer
University of Rochester
Authors
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Michele Buzzicotti
Department of Physics and INFN University of Rome Tor Vergata., Department of Physics & INFN, University of Rome Tor Vergata, Via della Ricerca Scientifica 1, 00133 Rome, Italy
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Benjamin A Storer
University of Rochester
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Stephen M Griffies
NOAA/Geophysical Fluid Dynamics Laboratory, NOAA Geophysical Fluid Dynamics Laboratory Princeton University Atmospheric and Oceanic Sciences Program
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Hussein Aluie
University of Rochester
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Oceanic Eddy-killing by Wind from Global Satellite Observations
ORAL
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Publication: S. Rai, M. Hecht, M. Maltrud, H. Aluie, Science Advances, 7(28), eabf4920 (2021) (https://doi.org/10.1126/sciadv.abf4920)
Presenters
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Hussein Aluie
University of Rochester
Authors
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Hussein Aluie
University of Rochester
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Shikhar Rai
University of Rochester
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Matthew Hecht
Los Alamos National Laboratory
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Matthew Maltrud
Los Alamos National Laboratory
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Quantification of the ocean-continent cistern problem
ORAL
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Presenters
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John A Whitehead
Woods Hole Ocean Inst
Authors
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John A Whitehead
Woods Hole Ocean Inst
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