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    Improved Detection Using Negative Elevation Angles for Mountaintop WSR-88Ds. Part II: Simulations of the Three Radars Covering Utah

    Source: Weather and Forecasting:;2003:;volume( 018 ):;issue: 003::page 393
    Author:
    Wood, Vincent T.
    ,
    Brown, Rodger A.
    ,
    Vasiloff, Steven V.
    DOI: 10.1175/1520-0434(2003)18<393:IDUNEA>2.0.CO;2
    Publisher: American Meteorological Society
    Abstract: About one-third of the Weather Surveillance Radar-1988 Doppler (WSR-88D) radars located in the western third of the United States are on the tops of mountains. These mountaintop radars employ scanning strategies that were designed for flatland radars, with the lowest elevation angle being +0.5°. Consequently, the radar signals are sent well above the populace and terrain surrounding the radar. The inability to adequately detect low-altitude weather events results in missed warnings of severe weather and in underestimates of the amount and areal extent of precipitation. Mountaintop radars could be utilized much more effectively if the scanning strategies included negative elevation angles. The state of Utah has the disadvantage that all three of the WSR-88Ds used by the National Weather Service to monitor weather events in the state are located on the tops of mountains. To determine the extent to which negative elevation angles would improve the detection capabilities of these radars over Utah and portions of the adjacent states, a WSR-88D simulation model is used to compare the existing scanning strategies with those that incorporate negative elevation angles. As might be expected, the use of negative elevation angles enhances low- to midaltitude detection of weather events over a much larger area than is possible using the existing scanning strategies. For example, the area where the centers of the beams from the three radars currently are within 1 km of the ground encompasses only 2% of the area within 230 km of the radars. Using negative elevation angles, the areal coverage within 1 km of the ground increases to over 30%.
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      Improved Detection Using Negative Elevation Angles for Mountaintop WSR-88Ds. Part II: Simulations of the Three Radars Covering Utah

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4171523
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    • Weather and Forecasting

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    contributor authorWood, Vincent T.
    contributor authorBrown, Rodger A.
    contributor authorVasiloff, Steven V.
    date accessioned2017-06-09T15:04:57Z
    date available2017-06-09T15:04:57Z
    date copyright2003/06/01
    date issued2003
    identifier issn0882-8156
    identifier otherams-3381.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4171523
    description abstractAbout one-third of the Weather Surveillance Radar-1988 Doppler (WSR-88D) radars located in the western third of the United States are on the tops of mountains. These mountaintop radars employ scanning strategies that were designed for flatland radars, with the lowest elevation angle being +0.5°. Consequently, the radar signals are sent well above the populace and terrain surrounding the radar. The inability to adequately detect low-altitude weather events results in missed warnings of severe weather and in underestimates of the amount and areal extent of precipitation. Mountaintop radars could be utilized much more effectively if the scanning strategies included negative elevation angles. The state of Utah has the disadvantage that all three of the WSR-88Ds used by the National Weather Service to monitor weather events in the state are located on the tops of mountains. To determine the extent to which negative elevation angles would improve the detection capabilities of these radars over Utah and portions of the adjacent states, a WSR-88D simulation model is used to compare the existing scanning strategies with those that incorporate negative elevation angles. As might be expected, the use of negative elevation angles enhances low- to midaltitude detection of weather events over a much larger area than is possible using the existing scanning strategies. For example, the area where the centers of the beams from the three radars currently are within 1 km of the ground encompasses only 2% of the area within 230 km of the radars. Using negative elevation angles, the areal coverage within 1 km of the ground increases to over 30%.
    publisherAmerican Meteorological Society
    titleImproved Detection Using Negative Elevation Angles for Mountaintop WSR-88Ds. Part II: Simulations of the Three Radars Covering Utah
    typeJournal Paper
    journal volume18
    journal issue3
    journal titleWeather and Forecasting
    identifier doi10.1175/1520-0434(2003)18<393:IDUNEA>2.0.CO;2
    journal fristpage393
    journal lastpage403
    treeWeather and Forecasting:;2003:;volume( 018 ):;issue: 003
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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