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    Human Contribution to the Lengthening of the Growing Season during 1950–99

    Source: Journal of Climate:;2007:;volume( 020 ):;issue: 021::page 5441
    Author:
    Christidis, Nikolaos
    ,
    Stott, Peter A.
    ,
    Brown, Simon
    ,
    Karoly, David J.
    ,
    Caesar, John
    DOI: 10.1175/2007JCLI1568.1
    Publisher: American Meteorological Society
    Abstract: Increasing surface temperatures are expected to result in longer growing seasons. An optimal detection analysis is carried out to assess the significance of increases in the growing season length during 1950?99, and to measure the anthropogenic component of the change. The signal is found to be detectable, both on global and continental scales, and human influence needs to be accounted for if it is to be fully explained. The change in the growing season length is found to be asymmetric and largely due to the earlier onset of spring, rather than the later ending of autumn. The growing season length, based on exceedence of local temperature thresholds, has a rate of increase of about 1.5 days decade?1 over the observation area. Local variations also allow for negative trends in parts of North America. The analysis suggests that the signal can be attributed to the anthropogenic forcings that have acted on the climate system and no other forcings are necessary to describe the change. Model projections predict that under future climate change the later ending of autumn will also contribute significantly to the lengthening of the growing season, which will increase in the twenty-first century by more than a month. Such major changes in seasonality will affect physical and biological systems in several ways, leading to important environmental and socioeconomic consequences and adaptation challenges.
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      Human Contribution to the Lengthening of the Growing Season during 1950–99

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    contributor authorChristidis, Nikolaos
    contributor authorStott, Peter A.
    contributor authorBrown, Simon
    contributor authorKaroly, David J.
    contributor authorCaesar, John
    date accessioned2017-06-09T16:19:11Z
    date available2017-06-09T16:19:11Z
    date copyright2007/11/01
    date issued2007
    identifier issn0894-8755
    identifier otherams-65670.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4206920
    description abstractIncreasing surface temperatures are expected to result in longer growing seasons. An optimal detection analysis is carried out to assess the significance of increases in the growing season length during 1950?99, and to measure the anthropogenic component of the change. The signal is found to be detectable, both on global and continental scales, and human influence needs to be accounted for if it is to be fully explained. The change in the growing season length is found to be asymmetric and largely due to the earlier onset of spring, rather than the later ending of autumn. The growing season length, based on exceedence of local temperature thresholds, has a rate of increase of about 1.5 days decade?1 over the observation area. Local variations also allow for negative trends in parts of North America. The analysis suggests that the signal can be attributed to the anthropogenic forcings that have acted on the climate system and no other forcings are necessary to describe the change. Model projections predict that under future climate change the later ending of autumn will also contribute significantly to the lengthening of the growing season, which will increase in the twenty-first century by more than a month. Such major changes in seasonality will affect physical and biological systems in several ways, leading to important environmental and socioeconomic consequences and adaptation challenges.
    publisherAmerican Meteorological Society
    titleHuman Contribution to the Lengthening of the Growing Season during 1950–99
    typeJournal Paper
    journal volume20
    journal issue21
    journal titleJournal of Climate
    identifier doi10.1175/2007JCLI1568.1
    journal fristpage5441
    journal lastpage5454
    treeJournal of Climate:;2007:;volume( 020 ):;issue: 021
    contenttypeFulltext
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