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Fischer, Philipp; Schwanitz, Max; Brand, Markus; Posner, Uwe; Brix, Holger; Baschek, Burkard (2018): Hydrographical time series data of the littoral zone of Kongsfjorden, Svalbard 2013. Alfred Wegener Institute - Biological Institute Helgoland, PANGAEA, https://doi.org/10.1594/PANGAEA.896822

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Abstract:
The dataset contains temperature, salinity, oxygen saturation, chlorophyll A and turbidity data from the AWIPEV underwater observatory from the year 2013 in a temporal resolution of 1 hour. The cabled observatory is located in 12m water depth and comprises single or multiple sensors for a specific parameter (see https://www.awi.de/en/science/biosciences/shelf-sea-system-ecology/main-research-focus/cosyna/underwater-node-spitsbergen.html) For a detailed description of the data see associated metadatafile "metadata_svulobs_2013_hydrography.pdf".
Related to:
Baschek, Burkard; Schroeder, Friedhelm; Brix, Holger; Riethmüller, Rolf; Badewien, Thomas H; Breitbach, Gisbert; Brügge, Bernd; Colijn, Franciscus; Doerffer, Roland; Eschenbach, Christiane; Friedrich, Jana; Fischer, Philipp; Garthe, Stefan; Horstmann, Jochen; Krasemann, Hansjörg; Metfies, Katja; Merckelbach, Lucas; Ohle, Nino; Petersen, Wilhelm; Pröfrock, Daniel; Röttgers, Rüdiger; Schlüter, Michael; Schulz, Jan; Schulz-Stellenfleth, Johannes; Stanev, Emil V; Staneva, Joanna; Winter, Christian; Wirtz, Kai W; Wollschläger, Jochen; Zielinski, Oliver; Ziemer, Friedwart (2017): The Coastal Observing System for Northern and Arctic Seas (COSYNA). Ocean Science, 13(3), 379-410, https://doi.org/10.5194/os-13-379-2017
Brand, Markus; Fischer, Philipp (2016): Species composition and abundance of the shallow water fish community of Kongsfjorden, Svalbard. Polar Biology, 39(11), 2155-2167, https://doi.org/10.1007/s00300-016-2022-y
Fischer, Philipp; Schwanitz, Max; Loth, Reiner; Posner, Uwe; Brand, Markus; Schroeder, Friedhelm (2017): First year of practical experiences of the new Arctic AWIPEV-COSYNA cabled Underwater Observatory in Kongsfjorden, Spitsbergen. Ocean Science, 13(2), 259-272, https://doi.org/10.5194/os-13-259-2017
van De Poll, Willem H; Maat, Douwe S; Fischer, Philipp; Rozema, Patrick D; Daly, Oonagh B; Koppelle, Sebastiaan; Visser, Ronald J W; Buma, Anita G J (2016): Atlantic advection driven changes in glacial meltwater: Effects on phytoplankton chlorophyll-a and taxonomic composition in Kongsfjorden, Spitsbergen. Frontiers in Marine Science, 3, https://doi.org/10.3389/fmars.2016.00200
Coverage:
Latitude: 78.930447 * Longitude: 11.919042
Date/Time Start: 2013-01-01T00:00:00 * Date/Time End: 2013-12-31T23:00:00
Event(s):
AWIPEV_UW-Observatory * Latitude: 78.930447 * Longitude: 11.919042 * Location: Kongsfjorden, Spitsbergen, Arctic * Device: Observation (OBSE)
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethodComment
1DATE/TIMEDate/TimeFischer, PhilippGeocode
2Chlorophyll aChl aµg/lFischer, PhilippSee further details: Metadata for the AWIPEV underwater observatoryValue have to be treated with care in case n = 1 because Chlorophyll A measurements are critical in general with only one longer term exposed sensor. Especially during summer, also biofouling is a certain issue explaining the larger confidence limits.
3Number of observationsNOBS#Fischer, PhilippSee further details: Metadata for the AWIPEV underwater observatoryChlorophyll a; number of observations included in the calculations for mean and confifence limits.
4Confidence valueConf±Fischer, PhilippSee further details: Metadata for the AWIPEV underwater observatoryChlorophyll a; 90% confidence value (+/-) in case of nobs >1
5Oxygen saturationO2 sat%Fischer, PhilippSee further details: Metadata for the AWIPEV underwater observatoryTemperature and salinity compensated oxygen saturation. Value have to be treated with care in case n = 1 because Oxygen saturation measurements are critical in general with only one longer term exposed sensor. Especially during summer, also biofouling is a certain issue explaining the larger confidence limits.
6Number of observationsNOBS#Fischer, PhilippSee further details: Metadata for the AWIPEV underwater observatoryOxygen saturation; number of observations included in the calculations for mean and confifence limits.
7Confidence valueConf±Fischer, PhilippSee further details: Metadata for the AWIPEV underwater observatoryOxygen saturation; 90% confidence value (+/-) in case of nobs >1
8SalinitySalFischer, PhilippSee further details: Metadata for the AWIPEV underwater observatory[PSU]
9Number of observationsNOBS#Fischer, PhilippSee further details: Metadata for the AWIPEV underwater observatorySalinity; number of observations included in the calculations for mean and confifence limits.
10Confidence valueConf±Fischer, PhilippSee further details: Metadata for the AWIPEV underwater observatorySalinity; 90% confidence value (+/-) in case of nobs >1
11Temperature, waterTemp°CFischer, PhilippSee further details: Metadata for the AWIPEV underwater observatory
12Number of observationsNOBS#Fischer, PhilippSee further details: Metadata for the AWIPEV underwater observatoryTemperature; number of observations included in the calculations for mean and confifence limits.
13Confidence valueConf±Fischer, PhilippSee further details: Metadata for the AWIPEV underwater observatoryTemperature; 90% confidence value (+/-) in case of nobs >1
14Turbidity (Formazin Turbidity Unit)TurbidityFTUFischer, PhilippSee further details: Metadata for the AWIPEV underwater observatoryValue have to be treated with care in case n = 1 because Turbidity measurements are critical in general with only one longer term exposed sensor. Especially during summer, also biofouling is a certain issue explaining the larger confidence limits.
15Number of observationsNOBS#Fischer, PhilippSee further details: Metadata for the AWIPEV underwater observatoryTurbidity; number of observations included in the calculations for mean and confifence limits.
16Confidence valueConf±Fischer, PhilippSee further details: Metadata for the AWIPEV underwater observatoryTurbidity; 90% confidence value (+/-) in case of nobs >1
Size:
108810 data points

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