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    Retrieval of Latent Heating from TRMM Measurements

    Source: Bulletin of the American Meteorological Society:;2006:;volume( 087 ):;issue: 011::page 1555
    Author:
    Tao, W-K.
    ,
    Smith, E. A.
    ,
    Adler, R. F.
    ,
    Hou, A. Y.
    ,
    Meneghini, R.
    ,
    Simpson, J.
    ,
    Haddad, Z. S.
    ,
    Iguchi, T.
    ,
    Satoh, S.
    ,
    Kakar, R.
    ,
    Krishnamurti, T. N.
    ,
    Kummerow, C. D.
    ,
    Lang, S.
    ,
    Nakamura, K.
    ,
    Nakazawa, T.
    ,
    Okamoto, K.
    ,
    Shige, S.
    ,
    Olson, W. S.
    ,
    Takayabu, Y.
    ,
    Tripoli, G. J.
    ,
    Yang, S.
    DOI: 10.1175/BAMS-87-11-1555
    Publisher: American Meteorological Society
    Abstract: Rainfall is a fundamental process within the Earth's hydrological cycle because it represents a principal forcing term in surface water budgets, while its energetics corollary, latent heating, is the principal source of atmospheric diabatic heating well into the middle latitudes. Latent heat production itself is a consequence of phase changes between the vapor, liquid, and frozen states of water. The properties of the vertical distribution of latent heat release modulate large-scale meridional and zonal circulations within the Tropics, as well as modify the energetic efficiencies of midlatitude weather systems. This paper highlights the retrieval of latent heating from satellite measurements generated by the Tropical Rainfall Measuring Mission (TRMM) satellite observatory, which was launched in November 1997 as a joint American?Japanese space endeavor. Since then, TRMM measurements have been providing credible four-dimensional accounts of rainfall over the global Tropics and subtropics, information that can be used to estimate the space?time structure of latent heating across the Earth's low latitudes. A set of algorithm methodologies for estimating latent heating based on precipitation-rate profile retrievals obtained from TRMM measurements has been under continuous development since the advent of the mission's research program. These algorithms are briefly described, followed by a discussion of the latent heating products that they generate. The paper then provides an overview of how TRMM-derived latent heating information is currently being used in conjunction with global weather and climate models, concluding with remarks intended to stimulate further research on latent heating retrieval from satellites.
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      Retrieval of Latent Heating from TRMM Measurements

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    contributor authorTao, W-K.
    contributor authorSmith, E. A.
    contributor authorAdler, R. F.
    contributor authorHou, A. Y.
    contributor authorMeneghini, R.
    contributor authorSimpson, J.
    contributor authorHaddad, Z. S.
    contributor authorIguchi, T.
    contributor authorSatoh, S.
    contributor authorKakar, R.
    contributor authorKrishnamurti, T. N.
    contributor authorKummerow, C. D.
    contributor authorLang, S.
    contributor authorNakamura, K.
    contributor authorNakazawa, T.
    contributor authorOkamoto, K.
    contributor authorShige, S.
    contributor authorOlson, W. S.
    contributor authorTakayabu, Y.
    contributor authorTripoli, G. J.
    contributor authorYang, S.
    date accessioned2017-06-09T16:42:57Z
    date available2017-06-09T16:42:57Z
    date copyright2006/11/01
    date issued2006
    identifier issn0003-0007
    identifier otherams-72859.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4214908
    description abstractRainfall is a fundamental process within the Earth's hydrological cycle because it represents a principal forcing term in surface water budgets, while its energetics corollary, latent heating, is the principal source of atmospheric diabatic heating well into the middle latitudes. Latent heat production itself is a consequence of phase changes between the vapor, liquid, and frozen states of water. The properties of the vertical distribution of latent heat release modulate large-scale meridional and zonal circulations within the Tropics, as well as modify the energetic efficiencies of midlatitude weather systems. This paper highlights the retrieval of latent heating from satellite measurements generated by the Tropical Rainfall Measuring Mission (TRMM) satellite observatory, which was launched in November 1997 as a joint American?Japanese space endeavor. Since then, TRMM measurements have been providing credible four-dimensional accounts of rainfall over the global Tropics and subtropics, information that can be used to estimate the space?time structure of latent heating across the Earth's low latitudes. A set of algorithm methodologies for estimating latent heating based on precipitation-rate profile retrievals obtained from TRMM measurements has been under continuous development since the advent of the mission's research program. These algorithms are briefly described, followed by a discussion of the latent heating products that they generate. The paper then provides an overview of how TRMM-derived latent heating information is currently being used in conjunction with global weather and climate models, concluding with remarks intended to stimulate further research on latent heating retrieval from satellites.
    publisherAmerican Meteorological Society
    titleRetrieval of Latent Heating from TRMM Measurements
    typeJournal Paper
    journal volume87
    journal issue11
    journal titleBulletin of the American Meteorological Society
    identifier doi10.1175/BAMS-87-11-1555
    journal fristpage1555
    journal lastpage1572
    treeBulletin of the American Meteorological Society:;2006:;volume( 087 ):;issue: 011
    contenttypeFulltext
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