Bio‐optical, physical, and chemical properties of a loop current eddy in the Gulf of Mexico

dc.contributor.author Zhang, Yingjun
dc.contributor.author Hu, Chuanmin
dc.contributor.author Barnes, Brian B.
dc.contributor.author Liu, Yonggang
dc.contributor.author Kourafalou, Vassiliki H.
dc.contributor.author McGillicuddy, Dennis J.
dc.contributor.author Cannizzaro, Jennifer P.
dc.contributor.author English, David C.
dc.contributor.author Lembke, Chad
dc.date.accessioned 2023-10-06T14:30:45Z
dc.date.available 2023-10-06T14:30:45Z
dc.date.issued 2023-02-25
dc.description Author Posting. © American Geophysical Union, 2023. This article is posted here by permission of American Geophysical Union for personal use, not for redistribution. The definitive version was published in Journal of Geophysical Research: Oceans 128(3), (2023): e2022JC018726, https://doi.org/10.1029/2022jc018726.
dc.description.abstract Multi‐sensor data collected with in situ and satellite instruments during August 2015 were used to understand how the three‐dimensional bio‐optical properties of a Loop Current Eddy (LCE) in the Gulf of Mexico (GoM) contrast those of the background waters, and how these properties are related to physical and chemical properties. With a surface radius of ∼150 km and vertical extension to 1,400–1,500 m, the LCE was found to have highly stratified waters in two layers, with one lying just below the mixed layer (16 m) and the other coinciding with the pycnocline (∼120–200 m within the eddy). Strong contrasts were found in the bio‐optical properties (chlorophyll‐a concentration, absorption of particulate and dissolved matters, particulate backscattering, and beam‐c attenuation) across the eddy core, eddy edge, and surrounding waters. Absorption coefficients (400 nm) of surface particulate and dissolved matters were ∼4 times higher in the surrounding waters than in the eddy core, while surface reflectance (400 nm) in the eddy core was ∼7 times higher than in the surrounding waters. The magnitude of deep chlorophyll maximum (DCM) was comparable (0.3–0.33 mg/m3) in all waters, but the depth of DCM in the eddy core (∼115 m) was much deeper than in the surrounding waters (60–75 m). These contrasts were found to correspond to different water masses with different physical (temperature, density, and buoyancy frequency) and chemical properties (salinity and dissolved oxygen concentration), where physical processes (river plume advection and eddy‐induced downwelling) appeared to drive the changes in bio‐optical properties.
dc.description.sponsorship This work was supported by the NASA student fellowship program “Future Investigators in NASA Earth and Space Science and Technology” (FINESST, 80NSSC19K1358), NASA Ocean Biology and Biogeochemistry Program (NNX16AR74G) and Ecological Forecast Program (NNX17AF57G), NOAA RESTORE Science Program (NA17NOS4510099), the Joint Polar Satellite System (JPSS) funding for the NOAA ocean color calibration and validation (Cal/Val) project, and the Gulf Research Program of the National Academy of Sciences (Award SCON-10000542), and the NOAA IOOS Southeast Coastal Ocean Observing Regional Association (SECOORA, Award NA21NOS0120097).
dc.identifier.citation Zhang, Y., Hu, C., Barnes, B., Liu, Y., Kourafalou, V., McGillicuddy, D., Cannizzaro, J., English, D., & Lembke, C. (2023). Bio‐optical, physical, and chemical properties of a Loop Current Eddy in the Gulf of Mexico. Journal of Geophysical Research: Oceans, 128(3), e2022JC018726.
dc.identifier.doi 10.1029/2022jc018726
dc.identifier.uri https://hdl.handle.net/1912/66965
dc.publisher American Geophysical Union
dc.relation.uri https://doi.org/10.1029/2022jc018726
dc.subject Gulf of Mexico
dc.subject Loop Current Eddy
dc.subject Three-dimensional
dc.subject Eddy structure
dc.subject Bio-optics
dc.subject Chlorophyll-a
dc.subject Colored dissolved organic matter
dc.subject Temperature
dc.subject Salinity
dc.subject Dissolved oxygen
dc.title Bio‐optical, physical, and chemical properties of a loop current eddy in the Gulf of Mexico
dc.type Article
dspace.entity.type Publication
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