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    Mesoscale Modeling of Summertime Refractive Conditions in the Southern California Bight

    Source: Journal of Applied Meteorology:;1997:;volume( 036 ):;issue: 001::page 22
    Author:
    Burk, Stephen D.
    ,
    Thompson, William T.
    DOI: 10.1175/1520-0450(1997)036<0022:MMOSRC>2.0.CO;2
    Publisher: American Meteorological Society
    Abstract: Large vertical gradients of temperature and moisture, often present at the top of the atmospheric boundary layer, can result in anomalous electromagnetic propagation. Layers in which the modified refractive index M decreases with height can act to trap microwave energy depending on the frequency and angle of incidence of the signal. Here the authors examine the ability of a mesoscale model to forecast the topography of such a trapping layer and to predict temporal trends in trapping-layer structure and depth. Data from the Variability of Coastal Atmospheric Refractivity (VOCAR) experiment are used to examine the fidelity of model forecasts. The intensive observing period of VOCAR occurred from 23 August to 3 September 1993 in the Southern California bight. The mesoscale numerical weather prediction model used has a sophisticated physics package that includes a second-order closure turbulence scheme, detailed radiative flux computations, and explicit cloud physics. The impact of several specific mesoscale and synoptic events (e.g., sea?land breezes, a migrating low) upon the refractivity field is examined along with the model?s capacity to forecast these features. The model exhibits significant promise in its ability to forecast trends in the height of the microwave trapping layer. Furthermore, these trends in trapping-layer depth are found to correlate rather well with the temporal behavior of the measured propagation factor.
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      Mesoscale Modeling of Summertime Refractive Conditions in the Southern California Bight

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    https://yetl.yabesh.ir/yetl1/handle/yetl/4147781
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    • Journal of Applied Meteorology

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    contributor authorBurk, Stephen D.
    contributor authorThompson, William T.
    date accessioned2017-06-09T14:06:09Z
    date available2017-06-09T14:06:09Z
    date copyright1997/01/01
    date issued1997
    identifier issn0894-8763
    identifier otherams-12441.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4147781
    description abstractLarge vertical gradients of temperature and moisture, often present at the top of the atmospheric boundary layer, can result in anomalous electromagnetic propagation. Layers in which the modified refractive index M decreases with height can act to trap microwave energy depending on the frequency and angle of incidence of the signal. Here the authors examine the ability of a mesoscale model to forecast the topography of such a trapping layer and to predict temporal trends in trapping-layer structure and depth. Data from the Variability of Coastal Atmospheric Refractivity (VOCAR) experiment are used to examine the fidelity of model forecasts. The intensive observing period of VOCAR occurred from 23 August to 3 September 1993 in the Southern California bight. The mesoscale numerical weather prediction model used has a sophisticated physics package that includes a second-order closure turbulence scheme, detailed radiative flux computations, and explicit cloud physics. The impact of several specific mesoscale and synoptic events (e.g., sea?land breezes, a migrating low) upon the refractivity field is examined along with the model?s capacity to forecast these features. The model exhibits significant promise in its ability to forecast trends in the height of the microwave trapping layer. Furthermore, these trends in trapping-layer depth are found to correlate rather well with the temporal behavior of the measured propagation factor.
    publisherAmerican Meteorological Society
    titleMesoscale Modeling of Summertime Refractive Conditions in the Southern California Bight
    typeJournal Paper
    journal volume36
    journal issue1
    journal titleJournal of Applied Meteorology
    identifier doi10.1175/1520-0450(1997)036<0022:MMOSRC>2.0.CO;2
    journal fristpage22
    journal lastpage31
    treeJournal of Applied Meteorology:;1997:;volume( 036 ):;issue: 001
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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