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    A Second-Order Closure Turbulence Model: New Heat Flux Equations and No Critical Richardson Number

    Source: Journal of the Atmospheric Sciences:;2020:;volume( 77 ):;issue: 008::page 2743
    Author:
    Cheng, Y.;Canuto, V. M.;Howard, A. M.;Ackerman, A. S.;Kelley, M.;Fridlind, A. M.;Schmidt, G. A.;Yao, M. S.;Del Genio, A.;Elsaesser, G. S.
    DOI: 10.1175/JAS-D-19-0240.1
    Publisher: American Meteorological Society
    Abstract: We formulate a new second-order closure turbulence model by employing a recent closure for the pressure–temperature correlation at the equation level. As a result, we obtain new heat flux equations that avoid the long-standing issue of a finite critical Richardson number. The new, structurally simpler model improves on the Mellor–Yamada and Galperin et al. models; a key feature includes enhanced mixing under stable conditions facilitating agreement with observational, experimental, and high-resolution numerical datasets. The model predicts a planetary boundary layer height deeper than predicted by models with low critical Richardson numbers, as demonstrated in single-column model runs of the GISS ModelE general circulation model.
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      A Second-Order Closure Turbulence Model: New Heat Flux Equations and No Critical Richardson Number

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4264009
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    contributor authorCheng, Y.;Canuto, V. M.;Howard, A. M.;Ackerman, A. S.;Kelley, M.;Fridlind, A. M.;Schmidt, G. A.;Yao, M. S.;Del Genio, A.;Elsaesser, G. S.
    date accessioned2022-01-30T17:49:48Z
    date available2022-01-30T17:49:48Z
    date copyright7/21/2020 12:00:00 AM
    date issued2020
    identifier issn0022-4928
    identifier otherjasd190240.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4264009
    description abstractWe formulate a new second-order closure turbulence model by employing a recent closure for the pressure–temperature correlation at the equation level. As a result, we obtain new heat flux equations that avoid the long-standing issue of a finite critical Richardson number. The new, structurally simpler model improves on the Mellor–Yamada and Galperin et al. models; a key feature includes enhanced mixing under stable conditions facilitating agreement with observational, experimental, and high-resolution numerical datasets. The model predicts a planetary boundary layer height deeper than predicted by models with low critical Richardson numbers, as demonstrated in single-column model runs of the GISS ModelE general circulation model.
    publisherAmerican Meteorological Society
    titleA Second-Order Closure Turbulence Model: New Heat Flux Equations and No Critical Richardson Number
    typeJournal Paper
    journal volume77
    journal issue8
    journal titleJournal of the Atmospheric Sciences
    identifier doi10.1175/JAS-D-19-0240.1
    journal fristpage2743
    journal lastpage2759
    treeJournal of the Atmospheric Sciences:;2020:;volume( 77 ):;issue: 008
    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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