Assimilation for skin SST in the NASA GEOS atmospheric data assimilation system.

Santha Akella, Ricardo Todling, Max Suarez
Author Information
  1. Santha Akella: Global Modeling and Assimilation Office, NASA GSFC, Greenbelt, MD.
  2. Ricardo Todling: Global Modeling and Assimilation Office, NASA GSFC, Greenbelt, MD.
  3. Max Suarez: Global Modeling and Assimilation Office, NASA GSFC, Greenbelt, MD.

Abstract

The present article describes the sea surface temperature (SST) developments implemented in the Goddard Earth Observing System, Version 5 (GEOS-5) Atmospheric Data Assimilation System (ADAS). These are enhancements that contribute to the development of an atmosphere-ocean coupled data assimilation system using GEOS. In the current quasi-operational GEOS-ADAS, the SST is a boundary condition prescribed based on the OSTIA product, therefore SST and skin SST (Ts) are identical. This work modifies the GEOS-ADAS Ts by modeling and assimilating near sea surface sensitive satellite infrared (IR) observations. The atmosphere-ocean interface layer of the GEOS atmospheric general circulation model (AGCM) is updated to include near surface diurnal warming and cool-skin effects. The GEOS analysis system is also updated to directly assimilate SST-relevant Advanced Very High Resolution Radiometer (AVHRR) radiance observations. Data assimilation experiments designed to evaluate the Ts modification in GEOS-ADAS show improvements in the assimilation of radiance observations that extends beyond the thermal IR bands of AVHRR. In particular, many channels of hyperspectral sensors, such as those of the Atmospheric Infrared Sounder (AIRS), and Infrared Atmospheric Sounding Interferometer (IASI) are also better assimilated. We also obtained improved fit to withheld, in-situ buoy measurement of near-surface SST. Evaluation of forecast skill scores show marginal to neutral benefit from the modified Ts.

Keywords

References

  1. Appl Opt. 1989 May 1;28(9):1714-9 [PMID: 20548731]
  2. J Clim. 2017 Jun 20;Volume 30(Iss 13):5419-5454 [PMID: 32020988]

Grants

  1. N-999999/Intramural NASA

Word Cloud

Created with Highcharts 10.0.0SSTassimilationGEOSTssurfaceAtmosphericDataAssimilationsystemGEOS-ADASobservationsalsoAVHRRseaSystematmosphere-oceandataskinnearIRatmosphericupdatedradianceshowInfraredpresentarticledescribestemperaturedevelopmentsimplementedGoddardEarthObservingVersion5GEOS-5ADASenhancementscontributedevelopmentcoupledusingcurrentquasi-operationalboundaryconditionprescribedbasedOSTIAproductthereforeidenticalworkmodifiesmodelingassimilatingsensitivesatelliteinfraredinterfacelayergeneralcirculationmodelAGCMincludediurnalwarmingcool-skineffectsanalysisdirectlyassimilateSST-relevantAdvancedHighResolutionRadiometerexperimentsdesignedevaluatemodificationimprovementsextendsbeyondthermalbandsparticularmanychannelshyperspectralsensorsSounderAIRSSoundingInterferometerIASIbetterassimilatedobtainedimprovedfitwithheldin-situbuoymeasurementnear-surfaceEvaluationforecastskillscoresmarginalneutralbenefitmodifiedNASACoupledDiurnalWarmingNWP

Similar Articles

Cited By (4)