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    Dynamics and Energetics of Trapped Diurnal Internal Kelvin Waves around a Midlatitude Island

    Source: Journal of Physical Oceanography:;2017:;Volume( 047 ):;issue: 010::page 2479
    Author:
    Masunaga, Eiji;Fringer, Oliver B.;Kitade, Yujiro;Yamazaki, Hidekatsu;Gallager, Scott M.
    DOI: 10.1175/JPO-D-16-0167.1
    Publisher: American Meteorological Society
    Abstract: AbstractThe generation of trapped and radiating internal tides around Izu?Oshima Island located off Sagami Bay, Japan, is investigated using the three-dimensional Stanford Unstructured Nonhydrostatic Terrain-following Adaptive Navier?Stokes Simulator (SUNTANS) that is validated with observations of isotherm displacements in shallow water. The model is forced by barotropic tides, which generate strong baroclinic internal tides in the study region. Model results showed that when diurnal K1 barotropic tides dominate, resonance of a trapped internal Kelvin wave leads to large-amplitude internal tides in shallow waters on the coast. This resonance produces diurnal motions that are much stronger than the semidiurnal motions. The weaker, freely propagating, semidiurnal internal tides are generated on the western side of the island, where the M2 internal tide beam angle matches the topographic slope. The internal wave energy flux due to the diurnal internal tides is much higher than that of the semidiurnal tides in the study region. Although the diurnal internal tide energy is trapped, this study shows that steepening of the Kelvin waves produces high-frequency internal tides that radiate from the island, thus acting as a mechanism to extract energy from the diurnal motions.
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      Dynamics and Energetics of Trapped Diurnal Internal Kelvin Waves around a Midlatitude Island

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    contributor authorMasunaga, Eiji;Fringer, Oliver B.;Kitade, Yujiro;Yamazaki, Hidekatsu;Gallager, Scott M.
    date accessioned2018-01-03T11:02:08Z
    date available2018-01-03T11:02:08Z
    date copyright8/2/2017 12:00:00 AM
    date issued2017
    identifier otherjpo-d-16-0167.1.pdf
    identifier urihttp://138.201.223.254:8080/yetl1/handle/yetl/4246361
    description abstractAbstractThe generation of trapped and radiating internal tides around Izu?Oshima Island located off Sagami Bay, Japan, is investigated using the three-dimensional Stanford Unstructured Nonhydrostatic Terrain-following Adaptive Navier?Stokes Simulator (SUNTANS) that is validated with observations of isotherm displacements in shallow water. The model is forced by barotropic tides, which generate strong baroclinic internal tides in the study region. Model results showed that when diurnal K1 barotropic tides dominate, resonance of a trapped internal Kelvin wave leads to large-amplitude internal tides in shallow waters on the coast. This resonance produces diurnal motions that are much stronger than the semidiurnal motions. The weaker, freely propagating, semidiurnal internal tides are generated on the western side of the island, where the M2 internal tide beam angle matches the topographic slope. The internal wave energy flux due to the diurnal internal tides is much higher than that of the semidiurnal tides in the study region. Although the diurnal internal tide energy is trapped, this study shows that steepening of the Kelvin waves produces high-frequency internal tides that radiate from the island, thus acting as a mechanism to extract energy from the diurnal motions.
    publisherAmerican Meteorological Society
    titleDynamics and Energetics of Trapped Diurnal Internal Kelvin Waves around a Midlatitude Island
    typeJournal Paper
    journal volume47
    journal issue10
    journal titleJournal of Physical Oceanography
    identifier doi10.1175/JPO-D-16-0167.1
    journal fristpage2479
    journal lastpage2498
    treeJournal of Physical Oceanography:;2017:;Volume( 047 ):;issue: 010
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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