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    Uncertainties in Ocean Latent Heat Flux Variations over Recent Decades in Satellite-Based Estimates and Reduced Observation Reanalyses

    Source: Journal of Climate:;2020:;volume( 33 ):;issue: 019::page 8415
    Author:
    Robertson, Franklin R.;Roberts, Jason B.;Bosilovich, Michael G.;Bentamy, Abderrahim;Clayson, Carol Anne;Fennig, Karsten;Schröder, Marc;Tomita, Hiroyuki;Compo, Gilbert P.;Gutenstein, Marloes;Hersbach, Hans;Kobayashi, Chiaki;Ricciardulli, Lucrezia;Sardeshmukh, Prashant;Slivinski, Laura C.
    DOI: 10.1175/JCLI-D-19-0954.1
    Publisher: American Meteorological Society
    Abstract: Four state-of-the-art satellite-based estimates of ocean surface latent heat fluxes (LHFs) extending over three decades are analyzed, focusing on the interannual variability and trends of near-global averages and regional patterns. Detailed intercomparisons are made with other datasets including 1) reduced observation reanalyses (RedObs) whose exclusion of satellite data renders them an important independent diagnostic tool; 2) a moisture budget residual LHF estimate using reanalysis moisture transport, atmospheric storage, and satellite precipitation; 3) the ECMWF Reanalysis 5 (ERA5); 4) Remote Sensing Systems (RSS) single-sensor passive microwave and scatterometer wind speed retrievals; and 5) several sea surface temperature (SST) datasets. Large disparities remain in near-global satellite LHF trends and their regional expression over the 1990–2010 period, during which time the interdecadal Pacific oscillation changed sign. The budget residual diagnostics support the smaller RedObs LHF trends. The satellites, ERA5, and RedObs are reasonably consistent in identifying contributions by the 10-m wind speed variations to the LHF trend patterns. However, contributions by the near-surface vertical humidity gradient from satellites and ERA5 trend upward in time with respect to the RedObs ensemble and show less agreement in trend patterns. Problems with wind speed retrievals from Special Sensor Microwave Imager/Sounder satellite sensors, excessive upward trends in trends in Optimal Interpolation Sea Surface Temperature (OISST AVHRR-Only) data used in most satellite LHF estimates, and uncertainties associated with poor satellite coverage before the mid-1990s are noted. Possibly erroneous trends are also identified in ERA5 LHF associated with the onset of scatterometer wind data assimilation in the early 1990s.
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      Uncertainties in Ocean Latent Heat Flux Variations over Recent Decades in Satellite-Based Estimates and Reduced Observation Reanalyses

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    contributor authorRobertson, Franklin R.;Roberts, Jason B.;Bosilovich, Michael G.;Bentamy, Abderrahim;Clayson, Carol Anne;Fennig, Karsten;Schröder, Marc;Tomita, Hiroyuki;Compo, Gilbert P.;Gutenstein, Marloes;Hersbach, Hans;Kobayashi, Chiaki;Ricciardulli, Lucrezia;Sardeshmukh, Prashant;Slivinski, Laura C.
    date accessioned2022-01-30T17:57:00Z
    date available2022-01-30T17:57:00Z
    date copyright8/31/2020 12:00:00 AM
    date issued2020
    identifier issn0894-8755
    identifier otherjclid190954.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4264240
    description abstractFour state-of-the-art satellite-based estimates of ocean surface latent heat fluxes (LHFs) extending over three decades are analyzed, focusing on the interannual variability and trends of near-global averages and regional patterns. Detailed intercomparisons are made with other datasets including 1) reduced observation reanalyses (RedObs) whose exclusion of satellite data renders them an important independent diagnostic tool; 2) a moisture budget residual LHF estimate using reanalysis moisture transport, atmospheric storage, and satellite precipitation; 3) the ECMWF Reanalysis 5 (ERA5); 4) Remote Sensing Systems (RSS) single-sensor passive microwave and scatterometer wind speed retrievals; and 5) several sea surface temperature (SST) datasets. Large disparities remain in near-global satellite LHF trends and their regional expression over the 1990–2010 period, during which time the interdecadal Pacific oscillation changed sign. The budget residual diagnostics support the smaller RedObs LHF trends. The satellites, ERA5, and RedObs are reasonably consistent in identifying contributions by the 10-m wind speed variations to the LHF trend patterns. However, contributions by the near-surface vertical humidity gradient from satellites and ERA5 trend upward in time with respect to the RedObs ensemble and show less agreement in trend patterns. Problems with wind speed retrievals from Special Sensor Microwave Imager/Sounder satellite sensors, excessive upward trends in trends in Optimal Interpolation Sea Surface Temperature (OISST AVHRR-Only) data used in most satellite LHF estimates, and uncertainties associated with poor satellite coverage before the mid-1990s are noted. Possibly erroneous trends are also identified in ERA5 LHF associated with the onset of scatterometer wind data assimilation in the early 1990s.
    publisherAmerican Meteorological Society
    titleUncertainties in Ocean Latent Heat Flux Variations over Recent Decades in Satellite-Based Estimates and Reduced Observation Reanalyses
    typeJournal Paper
    journal volume33
    journal issue19
    journal titleJournal of Climate
    identifier doi10.1175/JCLI-D-19-0954.1
    journal fristpage8415
    journal lastpage8437
    treeJournal of Climate:;2020:;volume( 33 ):;issue: 019
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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