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    Evolution of the U.S. Tornado Database: 1954–2003

    Source: Weather and Forecasting:;2006:;volume( 021 ):;issue: 001::page 86
    Author:
    Verbout, Stephanie M.
    ,
    Brooks, Harold E.
    ,
    Leslie, Lance M.
    ,
    Schultz, David M.
    DOI: 10.1175/WAF910.1
    Publisher: American Meteorological Society
    Abstract: Over the last 50 yr, the number of tornadoes reported in the United States has doubled from about 600 per year in the 1950s to around 1200 in the 2000s. This doubling is likely not related to meteorological causes alone. To account for this increase a simple least squares linear regression was fitted to the annual number of tornado reports. A ?big tornado day? is a single day when numerous tornadoes and/or many tornadoes exceeding a specified intensity threshold were reported anywhere in the country. By defining a big tornado day without considering the spatial distribution of the tornadoes, a big tornado day differs from previous definitions of outbreaks. To address the increase in the number of reports, the number of reports is compared to the expected number of reports in a year based on linear regression. In addition, the F1 and greater Fujita-scale record was used in determining a big tornado day because the F1 and greater series was more stationary over time as opposed to the F2 and greater series. Thresholds were applied to the data to determine the number and intensities of the tornadoes needed to be considered a big tornado day. Possible threshold values included fractions of the annual expected value associated with the linear regression and fixed numbers for the intensity criterion. Threshold values of 1.5% of the expected annual total number of tornadoes and/or at least 8 F1 and greater tornadoes identified about 18.1 big tornado days per year. Higher thresholds such as 2.5% and/or at least 15 F1 and greater tornadoes showed similar characteristics, yet identified approximately 6.2 big tornado days per year. Finally, probability distribution curves generated using kernel density estimation revealed that big tornado days were more likely to occur slightly earlier in the year and have a narrower distribution than any given tornado day.
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      Evolution of the U.S. Tornado Database: 1954–2003

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    contributor authorVerbout, Stephanie M.
    contributor authorBrooks, Harold E.
    contributor authorLeslie, Lance M.
    contributor authorSchultz, David M.
    date accessioned2017-06-09T17:35:06Z
    date available2017-06-09T17:35:06Z
    date copyright2006/02/01
    date issued2006
    identifier issn0882-8156
    identifier otherams-87598.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4231284
    description abstractOver the last 50 yr, the number of tornadoes reported in the United States has doubled from about 600 per year in the 1950s to around 1200 in the 2000s. This doubling is likely not related to meteorological causes alone. To account for this increase a simple least squares linear regression was fitted to the annual number of tornado reports. A ?big tornado day? is a single day when numerous tornadoes and/or many tornadoes exceeding a specified intensity threshold were reported anywhere in the country. By defining a big tornado day without considering the spatial distribution of the tornadoes, a big tornado day differs from previous definitions of outbreaks. To address the increase in the number of reports, the number of reports is compared to the expected number of reports in a year based on linear regression. In addition, the F1 and greater Fujita-scale record was used in determining a big tornado day because the F1 and greater series was more stationary over time as opposed to the F2 and greater series. Thresholds were applied to the data to determine the number and intensities of the tornadoes needed to be considered a big tornado day. Possible threshold values included fractions of the annual expected value associated with the linear regression and fixed numbers for the intensity criterion. Threshold values of 1.5% of the expected annual total number of tornadoes and/or at least 8 F1 and greater tornadoes identified about 18.1 big tornado days per year. Higher thresholds such as 2.5% and/or at least 15 F1 and greater tornadoes showed similar characteristics, yet identified approximately 6.2 big tornado days per year. Finally, probability distribution curves generated using kernel density estimation revealed that big tornado days were more likely to occur slightly earlier in the year and have a narrower distribution than any given tornado day.
    publisherAmerican Meteorological Society
    titleEvolution of the U.S. Tornado Database: 1954–2003
    typeJournal Paper
    journal volume21
    journal issue1
    journal titleWeather and Forecasting
    identifier doi10.1175/WAF910.1
    journal fristpage86
    journal lastpage93
    treeWeather and Forecasting:;2006:;volume( 021 ):;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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