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    The Role of Entrainment in the Diurnal Cycle of Continental Convection

    Source: Journal of Climate:;2010:;volume( 023 ):;issue: 010::page 2722
    Author:
    Del Genio, Anthony D.
    ,
    Wu, Jingbo
    DOI: 10.1175/2009JCLI3340.1
    Publisher: American Meteorological Society
    Abstract: In continental convective environments, general circulation models typically produce a diurnal cycle of rainfall that peaks close to the noon maximum of insolation, hours earlier than the observed peak. One possible reason is insufficient sensitivity of their cumulus parameterizations to the state of the environment due to weak entrainment. The Weather Research and Forecasting (WRF) model, run at cloud-resolving (600 and 125 m) resolution, is used to study the diurnal transition from shallow to deep convection during the monsoon break period of the Tropical Warm Pool?International Cloud Experiment. The WRF model develops a transition from shallow to deep convection in isolated events by 1430?1500 local time. The inferred entrainment rate weakens with increasing time of day as convection deepens. Several current cumulus parameterizations are tested for their ability to reproduce the WRF behavior. The Gregory parameterization, in which entrainment rate varies directly with parcel buoyancy and inversely as the square of the updraft speed, is the best predictor of the inferred WRF entrainment profiles. The Gregory scheme depends on a free parameter that represents the fraction of buoyant turbulent kinetic energy generation on the cloud scale that is consumed by the turbulent entrainment process at smaller scales. A single vertical profile of this free parameter, increasing with height above the boundary layer but constant with varying convection depth, produces entrainment rate profiles consistent with those inferred from the WRF over the buoyant depth of the convection. Parameterizations in which entrainment varies inversely with altitude or updraft speed or increases with decreasing tropospheric relative humidity do not perform as well. Entrainment rate at cloud base decreases as convection depth increases; this behavior appears to be related to an increase in vertical velocity at downdraft cold pool edges.
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      The Role of Entrainment in the Diurnal Cycle of Continental Convection

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    contributor authorDel Genio, Anthony D.
    contributor authorWu, Jingbo
    date accessioned2017-06-09T16:30:02Z
    date available2017-06-09T16:30:02Z
    date copyright2010/05/01
    date issued2010
    identifier issn0894-8755
    identifier otherams-68980.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4210597
    description abstractIn continental convective environments, general circulation models typically produce a diurnal cycle of rainfall that peaks close to the noon maximum of insolation, hours earlier than the observed peak. One possible reason is insufficient sensitivity of their cumulus parameterizations to the state of the environment due to weak entrainment. The Weather Research and Forecasting (WRF) model, run at cloud-resolving (600 and 125 m) resolution, is used to study the diurnal transition from shallow to deep convection during the monsoon break period of the Tropical Warm Pool?International Cloud Experiment. The WRF model develops a transition from shallow to deep convection in isolated events by 1430?1500 local time. The inferred entrainment rate weakens with increasing time of day as convection deepens. Several current cumulus parameterizations are tested for their ability to reproduce the WRF behavior. The Gregory parameterization, in which entrainment rate varies directly with parcel buoyancy and inversely as the square of the updraft speed, is the best predictor of the inferred WRF entrainment profiles. The Gregory scheme depends on a free parameter that represents the fraction of buoyant turbulent kinetic energy generation on the cloud scale that is consumed by the turbulent entrainment process at smaller scales. A single vertical profile of this free parameter, increasing with height above the boundary layer but constant with varying convection depth, produces entrainment rate profiles consistent with those inferred from the WRF over the buoyant depth of the convection. Parameterizations in which entrainment varies inversely with altitude or updraft speed or increases with decreasing tropospheric relative humidity do not perform as well. Entrainment rate at cloud base decreases as convection depth increases; this behavior appears to be related to an increase in vertical velocity at downdraft cold pool edges.
    publisherAmerican Meteorological Society
    titleThe Role of Entrainment in the Diurnal Cycle of Continental Convection
    typeJournal Paper
    journal volume23
    journal issue10
    journal titleJournal of Climate
    identifier doi10.1175/2009JCLI3340.1
    journal fristpage2722
    journal lastpage2738
    treeJournal of Climate:;2010:;volume( 023 ):;issue: 010
    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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