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    Laboratory investigations of iceberg capsize dynamics, energy dissipation and tsunamigenesis

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    Name:
    Burton et al 2012 JGR - Jason ...
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    Author
    Burton, J. C.
    Amundson, Jason M.
    Abbot, D. S.
    Boghosian, A.
    Cathles, L. M.
    Correa-Legisos, S.
    Darnell, N.
    Guttenberg, N.
    Holland, D. M.
    MacAyeal, D. R
    Keyword
    tsunamigenesis
    iceberg capsize dynamics
    iceberg
    gravitational potential energy
    fjord
    translational velocities
    iceberg stability experiments
    energy dissipation
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    URI
    http://hdl.handle.net/11122/11024
    Abstract
    We present laboratory experiments designed to quantify the stability and energy budget of buoyancy-driven iceberg capsize. Box-shaped icebergs were constructed out of low-density plastic, hydrostatically placed in an acrylic water tank containing freshwater of uniform density, and allowed (or forced, if necessary) to capsize. The maximum kinetic energy (translational plus rotational) of the icebergs was 15% of the total energy released during capsize, and radiated surface wave energy was 1% of the total energy released. The remaining energy was directly transferred into the water via hydrodynamic coupling, viscous drag, and turbulence. The dependence of iceberg capsize instability on iceberg aspect ratio implied by the tank experiments was found to closely agree with analytical predictions based on a simple, hydrostatic treatment of iceberg capsize. This analytical treatment, along with the high Reynolds numbers for the experiments (and considerably higher values for capsizing icebergs in nature), indicates that turbulence is an important mechanism of energy dissipation during iceberg capsize and can contribute a potentially important source of mixing in the stratified ocean proximal to marine ice margins.
    Description
    We present laboratory experiments designed to quantify the stability and energy budget of buoyancy-driven iceberg capsize.
    Date
    2012-01-20
    Publisher
    American Geophysical Union
    Type
    Article
    Peer-Reviewed
    Yes
    Citation
    Burton, J. C., J. M. Amundson, D. S. Abbot, A. Boghosian, L. M. Cathles, S. Correa-Legisos, K. N. Darnell, N. Guttenberg, D. M. Holland, and D. R. MacAyeal (2012), Laboratory investigations of iceberg capsize dynamics, energy dissipation and tsunamigenesis, J. Geophys. Res., 117, F01007, doi:10.1029/2011JF002055.
    Collections
    Amundson, Jason M.

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