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    Parameterization of Vertical Profiles of Governing Microphysical Parameters of Shallow Cumulus Cloud Ensembles Using LES with Bin Microphysics

    Source: Journal of the Atmospheric Sciences:;2018:;volume 076:;issue 002::page 533
    Author:
    Khain, Pavel
    ,
    Heiblum, Reuven
    ,
    Blahak, Ulrich
    ,
    Levi, Yoav
    ,
    Muskatel, Harel
    ,
    Vadislavsky, Elyakom
    ,
    Altaratz, Orit
    ,
    Koren, Ilan
    ,
    Dagan, Guy
    ,
    Shpund, Jacob
    ,
    Khain, Alexander
    DOI: 10.1175/JAS-D-18-0046.1
    Publisher: American Meteorological Society
    Abstract: Shallow convection is a subgrid process in cloud-resolving models for which their grid box is larger than the size of small cumulus clouds (Cu). At the same time such Cu substantially affect radiation properties and thermodynamic parameters of the low atmosphere. The main microphysical parameters used for calculation of radiative properties of Cu in cloud-resolving models are liquid water content (LWC), effective droplet radius, and cloud fraction (CF). In this study, these parameters of fields of small, warm Cu are calculated using large-eddy simulations (LESs) performed using the System for Atmospheric Modeling (SAM) with spectral bin microphysics. Despite the complexity of microphysical processes, several fundamental properties of Cu were found. First, despite the high variability of LWC and droplet concentration within clouds and between different clouds, the volume mean and effective radii per specific level vary only slightly. Second, the values of effective radius are close to those forming during adiabatic ascent of air parcels from cloud base. These findings allow for characterization of a cloud field by specific vertical profiles of effective radius and of mean liquid water content, which can be calculated using the theoretical profile of adiabatic liquid water content and the droplet concentration at cloud base. Using the results of these LESs, a simple parameterization of cloud-field-averaged vertical profiles of effective radius and of liquid water content is proposed for different aerosol and thermodynamic conditions. These profiles can be used for calculation of radiation properties of Cu fields in large-scale models. The role of adiabatic processes in the formation of microstructure of Cu is discussed.
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      Parameterization of Vertical Profiles of Governing Microphysical Parameters of Shallow Cumulus Cloud Ensembles Using LES with Bin Microphysics

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    contributor authorKhain, Pavel
    contributor authorHeiblum, Reuven
    contributor authorBlahak, Ulrich
    contributor authorLevi, Yoav
    contributor authorMuskatel, Harel
    contributor authorVadislavsky, Elyakom
    contributor authorAltaratz, Orit
    contributor authorKoren, Ilan
    contributor authorDagan, Guy
    contributor authorShpund, Jacob
    contributor authorKhain, Alexander
    date accessioned2019-09-22T09:03:31Z
    date available2019-09-22T09:03:31Z
    date copyright12/21/2018 12:00:00 AM
    date issued2018
    identifier otherJAS-D-18-0046.1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4262602
    description abstractShallow convection is a subgrid process in cloud-resolving models for which their grid box is larger than the size of small cumulus clouds (Cu). At the same time such Cu substantially affect radiation properties and thermodynamic parameters of the low atmosphere. The main microphysical parameters used for calculation of radiative properties of Cu in cloud-resolving models are liquid water content (LWC), effective droplet radius, and cloud fraction (CF). In this study, these parameters of fields of small, warm Cu are calculated using large-eddy simulations (LESs) performed using the System for Atmospheric Modeling (SAM) with spectral bin microphysics. Despite the complexity of microphysical processes, several fundamental properties of Cu were found. First, despite the high variability of LWC and droplet concentration within clouds and between different clouds, the volume mean and effective radii per specific level vary only slightly. Second, the values of effective radius are close to those forming during adiabatic ascent of air parcels from cloud base. These findings allow for characterization of a cloud field by specific vertical profiles of effective radius and of mean liquid water content, which can be calculated using the theoretical profile of adiabatic liquid water content and the droplet concentration at cloud base. Using the results of these LESs, a simple parameterization of cloud-field-averaged vertical profiles of effective radius and of liquid water content is proposed for different aerosol and thermodynamic conditions. These profiles can be used for calculation of radiation properties of Cu fields in large-scale models. The role of adiabatic processes in the formation of microstructure of Cu is discussed.
    publisherAmerican Meteorological Society
    titleParameterization of Vertical Profiles of Governing Microphysical Parameters of Shallow Cumulus Cloud Ensembles Using LES with Bin Microphysics
    typeJournal Paper
    journal volume76
    journal issue2
    journal titleJournal of the Atmospheric Sciences
    identifier doi10.1175/JAS-D-18-0046.1
    journal fristpage533
    journal lastpage560
    treeJournal of the Atmospheric Sciences:;2018:;volume 076:;issue 002
    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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