Observational needs of sea surface temperature

AG O'carroll, EM Armstrong, HM Beggs… - Frontiers in Marine …, 2019 - frontiersin.org
Sea surface temperature (SST) is a fundamental physical variable for understanding,
quantifying and predicting complex interactions between the ocean and the atmosphere …

Assessing impacts of observations on ocean circulation models with examples from coastal, shelf, and marginal seas

CA Edwards, P De Mey-Frémaux… - Frontiers in Marine …, 2024 - frontiersin.org
Ocean observing systems in coastal, shelf and marginal seas collect diverse oceanographic
information supporting a wide range of socioeconomic needs, but observations are …

Multi-sensor sea surface temperature products from the australian bureau of meteorology

PD Govekar, C Griffin, H Beggs - Remote Sensing, 2022 - mdpi.com
Sea surface temperature (SST) products that can resolve fine scale features, such as sub-
mesoscale eddies, ocean fronts and coastal upwelling, are increasingly in demand. In …

A machine learning approach to estimating the error in satellite sea surface temperature retrievals

C Kumar, G Podestá, K Kilpatrick, P Minnett - Remote Sensing of …, 2021 - Elsevier
Global, repeated, and accurate measurements of Sea Surface Temperature (SST) are
critical for weather and climate projections. While thermometers on buoys measure SST …

Assessing the ability of satellite sea surface temperature analyses to resolve spatial variability–The northwest tropical Atlantic ATOMIC region

GA Wick, DL Jackson, SL Castro - Remote Sensing of Environment, 2023 - Elsevier
Direct measurements of the sea surface temperature (SST) from multiple platforms deployed
during the Atlantic Tradewind Ocean-Atmosphere Mesoscale Interaction Campaign …

Comparison of FY-4A/AGRI SST with Himawari-8/AHI and In Situ SST

C Yang, L Guan, X Sun - Remote Sensing, 2023 - mdpi.com
The Fengyun-4A (FY-4A) satellite is a new-generation geostationary meteorological satellite
developed by China. The advanced geosynchronous radiation imager (AGRI), one of the …

JPSS VIIRS SST Reanalysis Version 3

O Jonasson, A Ignatov, V Pryamitsyn, B Petrenko… - Remote Sensing, 2022 - mdpi.com
The 3rd full-mission reanalysis (RAN3) of global sea surface temperature (SST) with a 750
m resolution at nadir is available from VIIRS instruments flown onboard two JPSS satellites …

AVHRR GAC SST Reanalysis Version 1 (RAN1)

A Ignatov, X Zhou, B Petrenko, X Liang, Y Kihai… - Remote Sensing, 2016 - mdpi.com
In response to its users' needs, the National Oceanic and Atmospheric Administration
(NOAA) initiated reanalysis (RAN) of the Advanced Very High Resolution Radiometer …

AVHRR GAC sea surface temperature reanalysis Version 2

B Petrenko, V Pryamitsyn, A Ignatov, O Jonasson… - Remote Sensing, 2022 - mdpi.com
The 40+ years-long sea surface temperature (SST) dataset from 4 km Global Area Coverage
(GAC) data of the Advanced Very High-Resolution Radiometers (AVHRR/2s and/3s) flown …

Near real time SST retrievals from Himawari-8 at NOAA using ACSPO system

M Kramar, A Ignatov, B Petrenko… - Ocean Sensing and …, 2016 - spiedigitallibrary.org
Japanese Himawari-8 (H8) satellite was launched on October 7, 2014 and placed into a
geostationary orbit at~ 140.7° E. The Advanced Himawari Imager (AHI) onboard H8 …