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  • Articles  (3)
  • Data  (8)
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  • 1
    Publication Date: 2008-04-12
    Print ISSN: 0148-0227
    Electronic ISSN: 2156-2202
    Topics: Geosciences
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  • 2
    Publication Date: 2010-10-08
    Print ISSN: 0148-0227
    Electronic ISSN: 2156-2202
    Topics: Geosciences
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  • 3
    Publication Date: 2005-01-01
    Print ISSN: 0148-0227
    Electronic ISSN: 2156-2202
    Topics: Geosciences
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  • 4
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    PANGAEA
    In:  Supplement to: Kock, Annette; Schafstall, Jens; Dengler, Marcus; Brandt, Peter; Bange, Hermann Werner (2012): Sea-to-air and diapycnal nitrous oxide fluxes in the eastern tropical North Atlantic Ocean. Biogeosciences, 9(3), 957-964, https://doi.org/10.5194/bg-9-957-2012
    Publication Date: 2024-02-01
    Description: Sea-to-air and diapycnal fluxes of nitrous oxide (N2O) into the mixed layer were determined during three cruises to the upwelling region off Mauritania. Sea-to-air fluxes as well as diapycnal fluxes were elevated close to the shelf break, but elevated sea-to-air fluxes reached further offshore as a result of the offshore transport of upwelled water masses. To calculate a mixed layer budget for N2O we compared the regionally averaged sea-to-air and diapycnal fluxes and estimated the potential contribution of other processes, such as vertical advection and biological N2O production in the mixed layer. Using common parameterizations for the gas transfer velocity, the comparison of the average sea-toair and diapycnal N2O fluxes indicated that the mean sea-toair flux is about three to four times larger than the diapycnal flux. Neither vertical and horizontal advection nor biological production were found sufficient to close the mixed layer budget. Instead, the sea-to-air flux, calculated using a parameterization that takes into account the attenuating effect of surfactants on gas exchange, is in the same range as the diapycnal flux. From our observations we conclude that common parameterizations for the gas transfer velocity likely overestimate the air-sea gas exchange within highly productive upwelling zones.
    Keywords: SOPRAN; Surface Ocean Processes in the Anthropocene
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 5
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    PANGAEA
    In:  Supplement to: Schafstall, Jens; Dengler, Marcus; Brandt, Peter; Bange, Hermann Werner (2010): Tidal-induced mixing and diapycnal nutrient fluxes in the Mauritanian upwelling region. Journal of Geophysical Research, 115(C10), https://doi.org/10.1029/2009JC005940
    Publication Date: 2024-02-01
    Description: The Mauritanian coastal area is one of the most biologically productive upwelling regions in the world ocean. Shipboard observations carried out during maximum upwelling season and short-term moored observations are used to investigate diapycnal mixing processes and to quantify diapycnal fluxes of nutrients. The observations indicate strong tide-topography interactions that are favored by near-critical angles occurring on large parts of the continental slope. Moored velocity observations reveal the existence of highly nonlinear internal waves and bores and levels of internal wave spectra are strongly elevated near the buoyancy frequency. Dissipation rates of turbulent kinetic energy at the slope and shelf determined from microstructure measurements in the upper 200 m averages to ? = 5 × 10-8 W kg-1. Particularly elevated dissipation rates were found at the continental slope close to the shelf break, being enhanced by a factor of 100 to 1000 compared to dissipation rates farther offshore. Vertically integrated dissipation rates per unit volume are strongest at the upper continental slope reaching values of up to 30 mW m-2. A comparison of fine-scale parameterizations of turbulent dissipation rates for shelf regions and the open ocean to the measured dissipation rates indicates deficiencies in reproducing the observations. Diapycnal nitrate fluxes above the continental slope at the base of the mixed layer yielding a mean value of 12 × 10-2 µmol m-2 s-1 are amongst the largest published to date. However, they seem to only represent a minor contribution (10% to 25%) to the net community production in the upwelling region.
    Keywords: SOPRAN; Surface Ocean Processes in the Anthropocene
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 6
    Publication Date: 2024-02-01
    Keywords: 06PO20050321; CT; Current velocity, east-west; Current velocity, north-south; DATE/TIME; DEPTH, water; LATITUDE; LONGITUDE; POS320/1; POS320/1-track; Poseidon; Shipboard Acoustic Doppler Current Profiling (SADCP); SOPRAN; Surface Ocean Processes in the Anthropocene; Tropical NE Atlantic; Underway cruise track measurements
    Type: Dataset
    Format: text/tab-separated-values, 309962 data points
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  • 7
    Publication Date: 2024-02-01
    Keywords: 06PO20070119; Acoustic Doppler Current Profiling (ADCP); CT; Current velocity, east-west; Current velocity, north-south; DATE/TIME; DEPTH, water; LATITUDE; LONGITUDE; PO347-track; POS347; Poseidon; SOPRAN; Surface Ocean Processes in the Anthropocene; Underway cruise track measurements; West Africa
    Type: Dataset
    Format: text/tab-separated-values, 214394 data points
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  • 8
    Publication Date: 2024-02-01
    Keywords: 06PO20070119; ALTITUDE; Anemometer; CT; DATE/TIME; Humidity, relative; HYGRO; Hygrometer; LATITUDE; LONGITUDE; PO347-track; POS347; Poseidon; Pressure, at given altitude; RADIO; Radiosonde; SOPRAN; Surface Ocean Processes in the Anthropocene; Temperature, air; Thermometer; Underway cruise track measurements; West Africa; Wind direction, relative; Wind direction, true; Wind speed, relative; Wind speed, true
    Type: Dataset
    Format: text/tab-separated-values, 155479 data points
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  • 9
    Publication Date: 2024-02-01
    Keywords: 06PO20070119; Course; CT; DATE/TIME; Depth, bathymetric; DEPTH, water; ECHO; Echosounder; LATITUDE; LONGITUDE; PO347-track; POS347; Poseidon; Salinity; SOPRAN; Speed; Surface Ocean Processes in the Anthropocene; Temperature, water; Thermosalinograph; TSG; Underway cruise track measurements; West Africa
    Type: Dataset
    Format: text/tab-separated-values, 110011 data points
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  • 10
    Publication Date: 2024-02-01
    Keywords: Calculated; CTD, SEA-BIRD SBE 9 plus; CTD/Rosette; CTD1; CTD10; CTD100; CTD101; CTD102; CTD103; CTD104; CTD105; CTD106; CTD107; CTD108; CTD109; CTD11; CTD110; CTD111; CTD112; CTD113; CTD114; CTD115; CTD116; CTD117; CTD118; CTD119; CTD12; CTD120; CTD121; CTD122; CTD123; CTD124; CTD125; CTD126; CTD13; CTD14; CTD15; CTD16; CTD17; CTD18; CTD19; CTD2; CTD20; CTD21; CTD22; CTD23; CTD24; CTD25; CTD26; CTD27; CTD28; CTD29; CTD3; CTD30; CTD31; CTD32; CTD33; CTD34; CTD35; CTD36; CTD37; CTD38; CTD39; CTD40; CTD41; CTD42; CTD43; CTD44; CTD45; CTD46; CTD47; CTD48; CTD49; CTD5; CTD50; CTD51; CTD52; CTD53; CTD54; CTD55; CTD56; CTD57; CTD58; CTD59; CTD6; CTD60; CTD61; CTD62; CTD63; CTD64; CTD65; CTD66; CTD67; CTD68; CTD69; CTD7; CTD70; CTD71; CTD72; CTD73; CTD74; CTD75; CTD76; CTD77; CTD78; CTD79; CTD8; CTD80; CTD81; CTD82; CTD83; CTD84; CTD85; CTD86; CTD87; CTD88; CTD89; CTD9; CTD90; CTD91; CTD92; CTD93; CTD94; CTD95; CTD96; CTD97; CTD98; CTD99; CTD-RO; Date/Time of event; Density, sigma-theta (0); DEPTH, water; Elevation of event; Event label; Latitude of event; Longitude of event; Optional event label; Oxygen; POS347; POS347_112-1; POS347_113-1; POS347_113-2; POS347_114-2; POS347_115-1; POS347_115-2; POS347_116-1; POS347_117-1; POS347_118-1; POS347_119-1; POS347_120-1; POS347_121-1; POS347_122-1; POS347_123-1; POS347_124-1; POS347_125-1; POS347_126-1; POS347_127-1; POS347_128-1; POS347_129-1; POS347_130-1; POS347_131-1; POS347_132-1; POS347_133-1; POS347_134-1; POS347_135-1; POS347_136-1; POS347_137-1; POS347_138-1; POS347_139-1; POS347_140-1; POS347_141-1; POS347_142-1; POS347_143-1; POS347_144-1; POS347_145-1; POS347_146-1; POS347_147-1; POS347_148-1; POS347_148-2; POS347_149-1; POS347_150-1; POS347_150-2; POS347_151-1; POS347_152-1; POS347_153-1; POS347_153-2; POS347_154-1; POS347_155-1; POS347_156-1; POS347_156-2; POS347_157-1; POS347_158-1; POS347_158-2; POS347_159-1; POS347_160-1; POS347_161-1; POS347_162-1; POS347_163-1; POS347_164-1; POS347_165-1; POS347_166-1; POS347_167-1; POS347_168-1; POS347_169-1; POS347_170-1; POS347_171-1; POS347_172-1; POS347_173-1; POS347_174-1; POS347_175-1; POS347_176-1; POS347_177-1; POS347_178-1; POS347_179-1; POS347_180-1; POS347_181-1; POS347_182-1; POS347_182-2; POS347_182-3; POS347_182-4; POS347_182-5; POS347_182-6; POS347_183-1; POS347_184-1; POS347_186-1; POS347_187-1; POS347_188-1; POS347_189-1; POS347_190-1; POS347_191-1; POS347_192-1; POS347_193-1; POS347_194-1; POS347_195-1; POS347_196-1; POS347_197-1; POS347_198-1; POS347_199-1; POS347_200-1; POS347_201-1; POS347_202-1; POS347_203-1; POS347_204-1; POS347_205-1; POS347_206-1; POS347_207-1; POS347_208-1; POS347_209-1; POS347_210-1; POS347_211-1; POS347_212-1; POS347_213-1; POS347_214-1; POS347_215-1; POS347_216-1; POS347_217-1; POS347_218-1; POS347_220-1; POS347_221-1; POS347_222-1; POS347_223-1; POS347_224-1; POS347_224-2; POS347_225-1; Poseidon; Pressure, water; Salinity; SOPRAN; Surface Ocean Processes in the Anthropocene; Temperature, water; West Africa
    Type: Dataset
    Format: text/tab-separated-values, 312695 data points
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