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    C-band Dual-Polarization Radar Signatures of Wet Downbursts around Cape Canaveral, Florida

    Source: Weather and Forecasting:;2018:;volume 034:;issue 001::page 103
    Author:
    Amiot, Corey G.
    ,
    Carey, Lawrence D.
    ,
    Roeder, William P.
    ,
    McNamara, Todd M.
    ,
    Blakeslee, Richard J.
    DOI: 10.1175/WAF-D-18-0081.1
    Publisher: American Meteorological Society
    Abstract: Wind warnings are the second-most-frequent advisory issued by the U.S. Air Force?s 45th Weather Squadron (45WS) at Cape Canaveral, Florida. Given the challenges associated with nowcasting convection in Florida during the warm season, improvements in 45WS warnings for convective wind events are desired. This study aims to explore the physical bases of dual-polarization radar signatures within wet downbursts around Cape Canaveral and identify signatures that may assist the 45WS during real-time convective wind nowcasting. Data from the 45WS?s C-band dual-polarization radar were subjectively analyzed within an environmental context, with quantitative wind measurements recorded by weather tower sensors for 32 threshold-level downbursts with near-surface winds ≥ 35 kt (1 kt ≈ 0.51 m s?1) and 32 null downbursts. Five radar signatures were identified in threshold-level downburst-producing storms: peak height of 1-dB differential reflectivity ZDR column, peak height of precipitation ice signature, peak reflectivity, height below 0°C level where ZDR increases to 3 dB within a descending reflectivity core (DRC), and vertical ZDR gradient within DRC. Examining these signatures directly in updraft?downdraft cycles that produced threshold-level winds yielded mean lead times of 20.0?28.2 min for cumulus and mature stage signatures and 12.8?14.9 min for dissipating stage signatures, with higher signature test values generally yielding higher skill scores. A conceptual test of utilizing signatures within earlier cells in multicell storms to indirectly predict the potential for intense downbursts in later cells was performed, which offered increased lead times and skill scores for an Eulerian forecast region downstream from the storm initiation location.
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      C-band Dual-Polarization Radar Signatures of Wet Downbursts around Cape Canaveral, Florida

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4262477
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    contributor authorAmiot, Corey G.
    contributor authorCarey, Lawrence D.
    contributor authorRoeder, William P.
    contributor authorMcNamara, Todd M.
    contributor authorBlakeslee, Richard J.
    date accessioned2019-09-22T09:02:50Z
    date available2019-09-22T09:02:50Z
    date copyright12/18/2018 12:00:00 AM
    date issued2018
    identifier otherWAF-D-18-0081.1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4262477
    description abstractWind warnings are the second-most-frequent advisory issued by the U.S. Air Force?s 45th Weather Squadron (45WS) at Cape Canaveral, Florida. Given the challenges associated with nowcasting convection in Florida during the warm season, improvements in 45WS warnings for convective wind events are desired. This study aims to explore the physical bases of dual-polarization radar signatures within wet downbursts around Cape Canaveral and identify signatures that may assist the 45WS during real-time convective wind nowcasting. Data from the 45WS?s C-band dual-polarization radar were subjectively analyzed within an environmental context, with quantitative wind measurements recorded by weather tower sensors for 32 threshold-level downbursts with near-surface winds ≥ 35 kt (1 kt ≈ 0.51 m s?1) and 32 null downbursts. Five radar signatures were identified in threshold-level downburst-producing storms: peak height of 1-dB differential reflectivity ZDR column, peak height of precipitation ice signature, peak reflectivity, height below 0°C level where ZDR increases to 3 dB within a descending reflectivity core (DRC), and vertical ZDR gradient within DRC. Examining these signatures directly in updraft?downdraft cycles that produced threshold-level winds yielded mean lead times of 20.0?28.2 min for cumulus and mature stage signatures and 12.8?14.9 min for dissipating stage signatures, with higher signature test values generally yielding higher skill scores. A conceptual test of utilizing signatures within earlier cells in multicell storms to indirectly predict the potential for intense downbursts in later cells was performed, which offered increased lead times and skill scores for an Eulerian forecast region downstream from the storm initiation location.
    publisherAmerican Meteorological Society
    titleC-band Dual-Polarization Radar Signatures of Wet Downbursts around Cape Canaveral, Florida
    typeJournal Paper
    journal volume34
    journal issue1
    journal titleWeather and Forecasting
    identifier doi10.1175/WAF-D-18-0081.1
    journal fristpage103
    journal lastpage131
    treeWeather and Forecasting:;2018:;volume 034:;issue 001
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
    نرم افزار کتابخانه دیجیتال "دی اسپیس" فارسی شده توسط یابش برای کتابخانه های ایرانی | تماس با یابش
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