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    The Shear Layer above and in Urban Canopies

    Source: Journal of Applied Meteorology and Climatology:;2007:;volume( 046 ):;issue: 003::page 368
    Author:
    Huq, Pablo
    ,
    White, Louis A.
    ,
    Carrillo, Alejandro
    ,
    Redondo, Jose
    ,
    Dharmavaram, Seshu
    ,
    Hanna, Steven R.
    DOI: 10.1175/JAM2469.1
    Publisher: American Meteorological Society
    Abstract: The nature and role of the shear layer, which occurs at the level of the average building height in urban canopies, are poorly understood. Velocity data are analyzed to determine the characteristics of the shear layer of the urban canopy, defined as the broad, linear segment of the mean velocity profile in a region of high shear. Particle image velocimetry measurements in a water tunnel were undertaken to resolve velocity profiles for urban canopies of two geometries typical of Los Angeles, California, and New York City, New York, for which the aspect ratios (average building height-to-width ratio) H/wb are 1 and 3, respectively. The shear layers evolve with distance differently: For H/wb = 1 the urban canopy shear layer extends quickly from above the building height to ground level, whereas for H/wb = 3 the urban canopy shear layer remains elevated at the vicinity of the building height, only reaching to a depth of z/H ? 0.5 far downstream. Profiles of the mean velocity gradient also differ from each other for urban canopies associated with H/wb of 1 or 3. Values of shear dU/dz increase toward ground level for an urban canopy associated with H/wb = 1. For an urban canopy associated with H/wb = 3, localized peaks of shear dU/dz exist at the building height and at ground level, with values of shear decreasing to zero at building midheight and far above the building height. A consequence of the different forms of the shear layers of the two urban canopies is that the ground-level dispersion coefficient is likely to be greater for urban canopies associated with H/wb = 1 than for those associated with H/wb = 3 because of an increased ventilation and exchange mechanism for cities such as Los Angeles relative to cities such as New York City that possess urban canyons.
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      The Shear Layer above and in Urban Canopies

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    https://yetl.yabesh.ir/yetl1/handle/yetl/4216617
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    • Journal of Applied Meteorology and Climatology

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    contributor authorHuq, Pablo
    contributor authorWhite, Louis A.
    contributor authorCarrillo, Alejandro
    contributor authorRedondo, Jose
    contributor authorDharmavaram, Seshu
    contributor authorHanna, Steven R.
    date accessioned2017-06-09T16:48:09Z
    date available2017-06-09T16:48:09Z
    date copyright2007/03/01
    date issued2007
    identifier issn1558-8424
    identifier otherams-74397.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4216617
    description abstractThe nature and role of the shear layer, which occurs at the level of the average building height in urban canopies, are poorly understood. Velocity data are analyzed to determine the characteristics of the shear layer of the urban canopy, defined as the broad, linear segment of the mean velocity profile in a region of high shear. Particle image velocimetry measurements in a water tunnel were undertaken to resolve velocity profiles for urban canopies of two geometries typical of Los Angeles, California, and New York City, New York, for which the aspect ratios (average building height-to-width ratio) H/wb are 1 and 3, respectively. The shear layers evolve with distance differently: For H/wb = 1 the urban canopy shear layer extends quickly from above the building height to ground level, whereas for H/wb = 3 the urban canopy shear layer remains elevated at the vicinity of the building height, only reaching to a depth of z/H ? 0.5 far downstream. Profiles of the mean velocity gradient also differ from each other for urban canopies associated with H/wb of 1 or 3. Values of shear dU/dz increase toward ground level for an urban canopy associated with H/wb = 1. For an urban canopy associated with H/wb = 3, localized peaks of shear dU/dz exist at the building height and at ground level, with values of shear decreasing to zero at building midheight and far above the building height. A consequence of the different forms of the shear layers of the two urban canopies is that the ground-level dispersion coefficient is likely to be greater for urban canopies associated with H/wb = 1 than for those associated with H/wb = 3 because of an increased ventilation and exchange mechanism for cities such as Los Angeles relative to cities such as New York City that possess urban canyons.
    publisherAmerican Meteorological Society
    titleThe Shear Layer above and in Urban Canopies
    typeJournal Paper
    journal volume46
    journal issue3
    journal titleJournal of Applied Meteorology and Climatology
    identifier doi10.1175/JAM2469.1
    journal fristpage368
    journal lastpage376
    treeJournal of Applied Meteorology and Climatology:;2007:;volume( 046 ):;issue: 003
    contenttypeFulltext
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    yabeshDSpacePersian
     
    DSpace software copyright © 2002-2015  DuraSpace
    نرم افزار کتابخانه دیجیتال "دی اسپیس" فارسی شده توسط یابش برای کتابخانه های ایرانی | تماس با یابش
    yabeshDSpacePersian