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    The Severe Thunderstorm Electrification and Precipitation Study

    Source: Bulletin of the American Meteorological Society:;2004:;volume( 085 ):;issue: 008::page 1107
    Author:
    Lang, Timothy J.
    ,
    Miller, L. Jay
    ,
    Weisman, Morris
    ,
    Rutledge, Steven A.
    ,
    Barker, Llyle J.
    ,
    Bringi, V. N.
    ,
    Chandrasekar, V.
    ,
    Detwiler, Andrew
    ,
    Doesken, Nolan
    ,
    Helsdon, John
    ,
    Knight, Charles
    ,
    Krehbiel, Paul
    ,
    Lyons, Walter A.
    ,
    Macgorman, Don
    ,
    Rasmussen, Erik
    ,
    Rison, William
    ,
    Rust, W. David
    ,
    Thomas, Ronald J.
    DOI: 10.1175/BAMS-85-8-1107
    Publisher: American Meteorological Society
    Abstract: During May?July 2000, the Severe Thunderstorm Electrification and Precipitation Study (STEPS) occurred in the High Plains, near the Colorado?Kansas border. STEPS aimed to achieve a better understanding of the interactions between kinematics, precipitation, and electrification in severe thunderstorms. Specific scientific objectives included 1) understanding the apparent major differences in precipitation output from super-cells that have led to them being classified as low precipitation (LP), classic or medium precipitation, and high precipitation; 2) understanding lightning formation and behavior in storms, and how lightning differs among storm types, particularly to better understand the mechanisms by which storms produce predominantly positive cloud-to-ground (CG) lightning; and 3) verifying and improving microphysical interpretations from polarimetric radar. The project involved the use of a multiple-Doppler polarimetric radar network, as well as a time-of-arrival very high frequency (VHF) lightning mapping system, an armored research aircraft, electric field meters carried on balloons, mobile mesonet vehicles, instruments to detect and classify transient luminous events (TLEs; e.g., sprites and blue jets) over thunderstorms, and mobile atmospheric sounding equipment. The project featured significant collaboration with the local National Weather Service office in Goodland, Kansas, as well as outreach to the general public. The project gathered data on a number of different cases, including LP storms, supercells, and mesoscale convective systems, among others. Many of the storms produced mostly positive CG lightning during significant portions of their lifetimes and also exhibited unusual electrical structures with opposite polarity to ordinary thunderstorms. The field data from STEPS is expected to bring new advances to understanding of supercells, positive CG lightning, TLEs, and precipitation formation in convective storms.
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      The Severe Thunderstorm Electrification and Precipitation Study

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    contributor authorLang, Timothy J.
    contributor authorMiller, L. Jay
    contributor authorWeisman, Morris
    contributor authorRutledge, Steven A.
    contributor authorBarker, Llyle J.
    contributor authorBringi, V. N.
    contributor authorChandrasekar, V.
    contributor authorDetwiler, Andrew
    contributor authorDoesken, Nolan
    contributor authorHelsdon, John
    contributor authorKnight, Charles
    contributor authorKrehbiel, Paul
    contributor authorLyons, Walter A.
    contributor authorMacgorman, Don
    contributor authorRasmussen, Erik
    contributor authorRison, William
    contributor authorRust, W. David
    contributor authorThomas, Ronald J.
    date accessioned2017-06-09T16:42:37Z
    date available2017-06-09T16:42:37Z
    date copyright2004/08/01
    date issued2004
    identifier issn0003-0007
    identifier otherams-72725.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4214760
    description abstractDuring May?July 2000, the Severe Thunderstorm Electrification and Precipitation Study (STEPS) occurred in the High Plains, near the Colorado?Kansas border. STEPS aimed to achieve a better understanding of the interactions between kinematics, precipitation, and electrification in severe thunderstorms. Specific scientific objectives included 1) understanding the apparent major differences in precipitation output from super-cells that have led to them being classified as low precipitation (LP), classic or medium precipitation, and high precipitation; 2) understanding lightning formation and behavior in storms, and how lightning differs among storm types, particularly to better understand the mechanisms by which storms produce predominantly positive cloud-to-ground (CG) lightning; and 3) verifying and improving microphysical interpretations from polarimetric radar. The project involved the use of a multiple-Doppler polarimetric radar network, as well as a time-of-arrival very high frequency (VHF) lightning mapping system, an armored research aircraft, electric field meters carried on balloons, mobile mesonet vehicles, instruments to detect and classify transient luminous events (TLEs; e.g., sprites and blue jets) over thunderstorms, and mobile atmospheric sounding equipment. The project featured significant collaboration with the local National Weather Service office in Goodland, Kansas, as well as outreach to the general public. The project gathered data on a number of different cases, including LP storms, supercells, and mesoscale convective systems, among others. Many of the storms produced mostly positive CG lightning during significant portions of their lifetimes and also exhibited unusual electrical structures with opposite polarity to ordinary thunderstorms. The field data from STEPS is expected to bring new advances to understanding of supercells, positive CG lightning, TLEs, and precipitation formation in convective storms.
    publisherAmerican Meteorological Society
    titleThe Severe Thunderstorm Electrification and Precipitation Study
    typeJournal Paper
    journal volume85
    journal issue8
    journal titleBulletin of the American Meteorological Society
    identifier doi10.1175/BAMS-85-8-1107
    journal fristpage1107
    journal lastpage1125
    treeBulletin of the American Meteorological Society:;2004:;volume( 085 ):;issue: 008
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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