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    Variability and Predictability of a Three-Dimensional Hurricane in Statistical Equilibrium

    Source: Journal of the Atmospheric Sciences:;2012:;Volume( 070 ):;issue: 006::page 1806
    Author:
    Brown, Bonnie R.
    ,
    Hakim, Gregory J.
    DOI: 10.1175/JAS-D-12-0112.1
    Publisher: American Meteorological Society
    Abstract: he internal variability and predictability of idealized three-dimensional hurricanes is investigated using 100-day-long, statistically steady simulations in a compressible, nonhydrostatic, cloud-resolving model. The equilibrium solution is free of the confounding effects of initial conditions and environmental variability in order to isolate the ?intrinsic? characteristics of the hurricane.The variance of the axisymmetric tangential velocity is dominated by two patterns: one characterized by a radial shift of the maximum wind, and the other by intensity modulation at the radius of maximum wind. These patterns are associated with convectively coupled bands of anomalous wind speed that propagate inward from large radii with a period of roughly 5 days, the strongest of which is associated with an eyewall replacement cycle. The asymmetric tangential wind is strongest radially inward of the radius of maximum wind. On average, asymmetries decelerate the azimuthal-mean tangential wind at the radius of maximum wind and accelerate it along the inner edge of eyewall.Predictability of axisymmetric storm structure is measured through the autocorrelation e-folding time and linear inverse modeling. Results from both methods reveal an intrinsic predictability time scale of about 2 days. The predictability and variability of the axisymmetric storm structure are consistent with recently obtained results from idealized axisymmetric hurricane modeling.
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      Variability and Predictability of a Three-Dimensional Hurricane in Statistical Equilibrium

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    https://yetl.yabesh.ir/yetl1/handle/yetl/4218952
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    contributor authorBrown, Bonnie R.
    contributor authorHakim, Gregory J.
    date accessioned2017-06-09T16:55:13Z
    date available2017-06-09T16:55:13Z
    date copyright2013/06/01
    date issued2012
    identifier issn0022-4928
    identifier otherams-76499.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4218952
    description abstracthe internal variability and predictability of idealized three-dimensional hurricanes is investigated using 100-day-long, statistically steady simulations in a compressible, nonhydrostatic, cloud-resolving model. The equilibrium solution is free of the confounding effects of initial conditions and environmental variability in order to isolate the ?intrinsic? characteristics of the hurricane.The variance of the axisymmetric tangential velocity is dominated by two patterns: one characterized by a radial shift of the maximum wind, and the other by intensity modulation at the radius of maximum wind. These patterns are associated with convectively coupled bands of anomalous wind speed that propagate inward from large radii with a period of roughly 5 days, the strongest of which is associated with an eyewall replacement cycle. The asymmetric tangential wind is strongest radially inward of the radius of maximum wind. On average, asymmetries decelerate the azimuthal-mean tangential wind at the radius of maximum wind and accelerate it along the inner edge of eyewall.Predictability of axisymmetric storm structure is measured through the autocorrelation e-folding time and linear inverse modeling. Results from both methods reveal an intrinsic predictability time scale of about 2 days. The predictability and variability of the axisymmetric storm structure are consistent with recently obtained results from idealized axisymmetric hurricane modeling.
    publisherAmerican Meteorological Society
    titleVariability and Predictability of a Three-Dimensional Hurricane in Statistical Equilibrium
    typeJournal Paper
    journal volume70
    journal issue6
    journal titleJournal of the Atmospheric Sciences
    identifier doi10.1175/JAS-D-12-0112.1
    journal fristpage1806
    journal lastpage1820
    treeJournal of the Atmospheric Sciences:;2012:;Volume( 070 ):;issue: 006
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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