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    An Intercomparison of Antarctic NWP during the Austral Summer Special Observing Period for the Year of Polar Prediction

    Source: Weather and Forecasting:;2022:;volume( 037 ):;issue: 006::page 833
    Author:
    Benjamin J. E. Schroeter
    ,
    Nathaniel L. Bindoff
    ,
    Phil Reid
    ,
    Simon P. Alexander
    DOI: 10.1175/WAF-D-21-0088.1
    Publisher: American Meteorological Society
    Abstract: The special observing periods (SOPs) of the Year of Polar Prediction present an opportunity to assess the skill of numerical weather prediction (NWP) models operating over the Antarctic, many of which assimilated additional observations during an SOP to produce some of the most observationally informed model output to date for the Antarctic region and permitting closer examination of model performance under various configurations and parameterizations. This intercomparison evaluates six NWP models spanning global and limited domains, coupled and uncoupled, operating in the Antarctic during the austral summer SOP between 16 November 2018 and 15 February 2019. Model performance varies regionally between each model and parameter; however, the majority of models were found to be warm biased over the continent with respect to ERA5 at analysis, some with biases growing to 3.5 K over land after 48 h. Temperature biases over sea ice were found to be strongly correlated between analysis and 48 h in uncoupled models, but that this correlation can be reduced through coupling to a sea ice model. Surface pressure and 500-hPa geopotential height forecasts and biases were found to be strongly correlated over open ocean in all models, and wind speed forecasts were found to be generally more skillful at higher resolutions with the exception of fast modeled winds over sloping terrain in PolarWRF. Surface sensible and latent heat flux forecasts and biases produced diverse correlations, varying by model, parameter, and gridcell classification. Of the models evaluated, those which couple atmosphere, sea ice, and ocean typically exhibited stronger skill.
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      An Intercomparison of Antarctic NWP during the Austral Summer Special Observing Period for the Year of Polar Prediction

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    https://yetl.yabesh.ir/yetl1/handle/yetl/4290245
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    contributor authorBenjamin J. E. Schroeter
    contributor authorNathaniel L. Bindoff
    contributor authorPhil Reid
    contributor authorSimon P. Alexander
    date accessioned2023-04-12T18:47:00Z
    date available2023-04-12T18:47:00Z
    date copyright2022/06/01
    date issued2022
    identifier otherWAF-D-21-0088.1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4290245
    description abstractThe special observing periods (SOPs) of the Year of Polar Prediction present an opportunity to assess the skill of numerical weather prediction (NWP) models operating over the Antarctic, many of which assimilated additional observations during an SOP to produce some of the most observationally informed model output to date for the Antarctic region and permitting closer examination of model performance under various configurations and parameterizations. This intercomparison evaluates six NWP models spanning global and limited domains, coupled and uncoupled, operating in the Antarctic during the austral summer SOP between 16 November 2018 and 15 February 2019. Model performance varies regionally between each model and parameter; however, the majority of models were found to be warm biased over the continent with respect to ERA5 at analysis, some with biases growing to 3.5 K over land after 48 h. Temperature biases over sea ice were found to be strongly correlated between analysis and 48 h in uncoupled models, but that this correlation can be reduced through coupling to a sea ice model. Surface pressure and 500-hPa geopotential height forecasts and biases were found to be strongly correlated over open ocean in all models, and wind speed forecasts were found to be generally more skillful at higher resolutions with the exception of fast modeled winds over sloping terrain in PolarWRF. Surface sensible and latent heat flux forecasts and biases produced diverse correlations, varying by model, parameter, and gridcell classification. Of the models evaluated, those which couple atmosphere, sea ice, and ocean typically exhibited stronger skill.
    publisherAmerican Meteorological Society
    titleAn Intercomparison of Antarctic NWP during the Austral Summer Special Observing Period for the Year of Polar Prediction
    typeJournal Paper
    journal volume37
    journal issue6
    journal titleWeather and Forecasting
    identifier doi10.1175/WAF-D-21-0088.1
    journal fristpage833
    journal lastpage852
    page833–852
    treeWeather and Forecasting:;2022:;volume( 037 ):;issue: 006
    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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