Using Remotely Sensed Sea Surface Salinity and Colored Detrital Matter to Characterize Freshened Surface Layers in the Kara and Laptev Seas during the Ice-Free Season
暂无分享,去创建一个
Carolina Gabarró | Estrella Olmedo | Marta Umbert | Sébastien Guimbard | Rafael Gonçalves-Araujo | Justino Martínez | M. Umbert | S. Guimbard | C. Gabarró | E. Olmedo | Justino Martínez | Rafael Gonçalves‐Araujo
[1] Chuanmin Hu,et al. Estimating sea surface salinity in the northern Gulf of Mexico from satellite ocean color measurements , 2017 .
[2] Joaquim Ballabrera-Poy,et al. New blending algorithm to synergize ocean variables: The case of SMOS sea surface salinity maps , 2014 .
[3] A. Turiel,et al. Sea surface salinity estimates from spaceborne L-band radiometers: An overview of the first decade of observation (2010–2019) , 2020, Remote Sensing of Environment.
[4] T. Krumpen,et al. On the Variability of Stratification in the Freshwater-Influenced Laptev Sea Region , 2020, Frontiers in Marine Science.
[5] A. A. Kubryakov,et al. River plume dynamics in the Kara Sea from altimetry-based lagrangian model, satellite salinity and chlorophyll data. , 2016 .
[6] Shiho Kobayashi,et al. High-resolution surface salinity maps in coastal oceans based on geostationary ocean color images: quantitative analysis of river plume dynamics , 2018, Journal of Oceanography.
[7] J. Boutin,et al. Properties of surface water masses in the Laptev and the East Siberian seas in summer 2018 from in situ and satellite data , 2021, Ocean Science.
[8] Michael Karcher,et al. Arctic freshwater export: Status, mechanisms, and prospects , 2015 .
[9] S. Kern,et al. Version 2 of the EUMETSAT OSI SAF and ESA CCI sea-ice concentration climate data records , 2018, The Cryosphere.
[10] Annick Bricaud,et al. Retrieval of Colored Detrital Matter (CDM) light absorption coefficients in the Mediterranean Sea using field and satellite ocean color radiometry: Evaluation of bio-optical inversion models , 2016 .
[11] A. Grigoriev,et al. Spatial and vertical variability of primary production in the Kara Sea in July and August 2016: the influence of the river plume and subsurface chlorophyll maxima , 2018, Polar Biology.
[12] J. M. Martin,et al. A reassessment of the Eurasian river input of water, sediment, major elements, and nutrients to the Arctic Ocean , 1996 .
[13] D. Glukhovets,et al. Surface desalinated layer distribution in the Kara Sea determined by shipboard and satellite data , 2020 .
[14] R. Doerffer,et al. Ocean Colour Remote Sensing in the Laptev Sea , 2018, Remote Sensing of the Asian Seas.
[15] David Bowers,et al. The relationship between CDOM and salinity in estuaries: An analytical and graphical solution , 2008 .
[16] F. Muller‐Karger,et al. Comparison of ship and satellite bio-optical measurements on the continental margin of the NE Gulf of Mexico , 2003 .
[17] Freshwater in the Arctic Ocean 2010–2019 , 2021, Ocean Science.
[18] David G. Barber,et al. Distribution, characteristics and potential impacts of chromophoric dissolved organic matter (CDOM) in Hudson Strait and Hudson Bay, Canada , 2007 .
[19] J. Walsh,et al. Trajectory Shifts in the Arctic and Subarctic Freshwater Cycle , 2006, Science.
[20] F. M. Selten,et al. Future increases in Arctic precipitation linked to local evaporation and sea-ice retreat , 2014, Nature.
[21] A. Polukhin. The role of river runoff in the Kara Sea surface layer acidification and carbonate system changes , 2019, Environmental Research Letters.
[22] B. Rabe,et al. High colored dissolved organic matter (CDOM) absorption in surface waters of the central-eastern Arctic Ocean: Implications for biogeochemistry and ocean color algorithms , 2018, PloS one.
[23] Richard B. Lammers,et al. Increasing River Discharge to the Arctic Ocean , 2002, Science.
[24] S. Guikema,et al. Remotely sensed estimates of surface salinity in the Chesapeake Bay: A statistical approach , 2012 .
[25] I. Semiletov,et al. Freshwater transport between the Kara, Laptev, and East-Siberian seas , 2020, Scientific Reports.
[26] C. Stedmon,et al. From Fresh to Marine Waters: Characterization and Fate of Dissolved Organic Matter in the Lena River Delta Region, Siberia , 2015, Front. Mar. Sci..
[27] Joaquim Ballabrera-Poy,et al. Seven Years of SMOS Sea Surface Salinity at High Latitudes: Variability in Arctic and Sub-Arctic Regions , 2018, Remote. Sens..
[28] Joaquim Ballabrera-Poy,et al. Synergy between Ocean Variables: Remotely Sensed Surface Temperature and Chlorophyll Concentration Coherence , 2020, Remote. Sens..
[29] J. Hölemann,et al. Assessing the Influence of Water Constituents on the Radiative Heating of Laptev Sea Shelf Waters , 2019, Front. Mar. Sci..
[30] Richard L. Miller,et al. On the Use of Ocean Color Remote Sensing to Measure the Transport of Dissolved Organic Carbon by the Mississippi River Plume , 2008 .
[31] J. Hölemann,et al. The impact of the freeze–melt cycle of land-fast ice on the distribution of dissolved organic matter in the Laptev and East Siberian seas (Siberian Arctic) , 2021 .
[32] B. Öhlander,et al. Distribution of Fe isotopes in particles and colloids in the salinity gradient along the Lena River plume, Laptev Sea , 2019, Biogeosciences.
[33] J. Hölemann,et al. Dissolved organic matter at the fluvial–marine transition in the Laptev Sea using in situ data and ocean colour remote sensing , 2019, Biogeosciences.
[34] G. Ferrari,et al. CDOM Absorption Characteristics with Relation to Fluorescence and Salinity in Coastal Areas of the Southern Baltic Sea , 1998 .
[35] Joaquim Ballabrera-Poy,et al. Improving time and space resolution of SMOS salinity maps using multifractal fusion , 2016 .
[36] Svetlana V. Patsaeva,et al. CDOM Optical Properties and DOC Content in the Largest Mixing Zones of the Siberian Shelf Seas , 2021, Remote. Sens..
[37] Marcel Babin,et al. A new algorithm for discriminating water sources from space: A case study for the southern Beaufort Sea using MODIS ocean color and SMOS salinity data , 2016 .
[38] P. Raymond,et al. Seasonal and Annual Fluxes of Nutrients and Organic Matter from Large Rivers to the Arctic Ocean and Surrounding Seas , 2012, Estuaries and Coasts.
[39] Daqing Yang,et al. River Freshwater Flux to the Arctic Ocean , 2020 .
[41] J. Hölemann,et al. Community structure and spatial distribution of phytoplankton in relation to hydrography in the Laptev Sea and the East Siberian Sea (autumn 2008) , 2021, Polar Biology.