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    Climate Change and the Impact of Extreme Temperatures on Aviation

    Source: Weather, Climate, and Society:;2014:;volume( 007 ):;issue: 001::page 94
    Author:
    Coffel, E.
    ,
    Horton, R.
    DOI: 10.1175/WCAS-D-14-00026.1
    Publisher: American Meteorological Society
    Abstract: emperature and airport elevation significantly influence the maximum allowable takeoff weight of an aircraft by changing the surface air density and thus the lift produced at a given speed. For a given runway length, airport elevation, and aircraft type, there is a temperature threshold above which the airplane cannot take off at its maximum weight and thus must be weight restricted. The number of summer days necessitating weight restriction has increased since 1980 along with the observed increase in surface temperature. Climate change is projected to increase mean temperatures at all airports and to significantly increase the frequency and severity of extreme heat events at some. These changes will negatively affect aircraft performance, leading to increased weight restrictions, especially at airports with short runways and little room to expand. For a Boeing 737-800 aircraft, it was found that the number of weight-restriction days between May and September will increase by 50%?200% at four major airports in the United States by 2050?70 under the RCP8.5 emissions scenario. These performance reductions may have a negative economic effect on the airline industry. Increased weight restrictions have previously been identified as potential impacts of climate change, but this study is the first to quantify the effect of higher temperatures on commercial aviation. Planning for changes in extreme heat events will help the aviation industry to reduce its vulnerability to this aspect of climate change.
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      Climate Change and the Impact of Extreme Temperatures on Aviation

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    https://yetl.yabesh.ir/yetl1/handle/yetl/4232225
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    contributor authorCoffel, E.
    contributor authorHorton, R.
    date accessioned2017-06-09T17:37:59Z
    date available2017-06-09T17:37:59Z
    date copyright2015/01/01
    date issued2014
    identifier issn1948-8327
    identifier otherams-88444.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4232225
    description abstractemperature and airport elevation significantly influence the maximum allowable takeoff weight of an aircraft by changing the surface air density and thus the lift produced at a given speed. For a given runway length, airport elevation, and aircraft type, there is a temperature threshold above which the airplane cannot take off at its maximum weight and thus must be weight restricted. The number of summer days necessitating weight restriction has increased since 1980 along with the observed increase in surface temperature. Climate change is projected to increase mean temperatures at all airports and to significantly increase the frequency and severity of extreme heat events at some. These changes will negatively affect aircraft performance, leading to increased weight restrictions, especially at airports with short runways and little room to expand. For a Boeing 737-800 aircraft, it was found that the number of weight-restriction days between May and September will increase by 50%?200% at four major airports in the United States by 2050?70 under the RCP8.5 emissions scenario. These performance reductions may have a negative economic effect on the airline industry. Increased weight restrictions have previously been identified as potential impacts of climate change, but this study is the first to quantify the effect of higher temperatures on commercial aviation. Planning for changes in extreme heat events will help the aviation industry to reduce its vulnerability to this aspect of climate change.
    publisherAmerican Meteorological Society
    titleClimate Change and the Impact of Extreme Temperatures on Aviation
    typeJournal Paper
    journal volume7
    journal issue1
    journal titleWeather, Climate, and Society
    identifier doi10.1175/WCAS-D-14-00026.1
    journal fristpage94
    journal lastpage102
    treeWeather, Climate, and Society:;2014:;volume( 007 ):;issue: 001
    contenttypeFulltext
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