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  • PANGAEA  (81)
  • MDPI  (1)
Document type
Keywords
  • 11
    Publication Date: 2023-01-13
    Keywords: Absorption coefficient, colored dissolved organic matter at 254 nm; Absorption coefficient, colored dissolved organic matter at 260 nm; Absorption coefficient, colored dissolved organic matter at 350 nm; Absorption coefficient, colored dissolved organic matter at 375 nm; Absorption coefficient, colored dissolved organic matter at 400 nm; Absorption coefficient, colored dissolved organic matter at 412 nm; Absorption coefficient, colored dissolved organic matter at 440 nm; Absorption coefficient, colored dissolved organic matter at 443 nm; BEL13-007; BEL13-009; BEL13-011; BEL13-022; BEL13-025; BEL13-027; BEL13-030; BEL13-031; BEL13-033; BEL13-038; BEL13-039; BEL13-042; Date/Time of event; DEPTH, water; Event label; Fildes Peninsula; Kitiesh Lake; Latitude of event; Longitude of event; Optional event label; Spectral slope of colored dissolved organic matter absorption, 275-295 nm; Spectral slope of colored dissolved organic matter absorption, 300-500 nm; Spectral slope of colored dissolved organic matter absorption, 350-400 nm; Spectral slope of colored dissolved organic matter absorption ratio; Water sample; WS
    Type: Dataset
    Format: text/tab-separated-values, 144 data points
    Location Call Number Limitation Availability
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  • 12
    Publication Date: 2023-06-19
    Keywords: Area/locality; AWI_PerDyn; DATE/TIME; LATITUDE; LEN; Lena Delta, Siberia, Russia; LenaDeltaRegion; LONGITUDE; Permafrost Research (Periglacial Dynamics) @ AWI; River, flux rate, total suspended matter; River discharge, daily mean
    Type: Dataset
    Format: text/tab-separated-values, 51 data points
    Location Call Number Limitation Availability
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  • 13
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    PANGAEA
    In:  Supplement to: Holl, David; Wille, Christian; Sachs, Torsten; Schreiber, Peter; Runkle, Benjamin R K; Beckebanze, Lutz; Langer, Moritz; Boike, Julia; Pfeiffer, Eva-Maria; Fedorova, Irina V; Bolshiyanov, Dimitry Yu; Grigoriev, Mikhail N; Kutzbach, Lars (2019): A long-term (2002 to 2017) record of closed-path and open-path eddy covariance CO2 net ecosystem exchange fluxes from the Siberian Arctic. Earth System Science Data, 11(1), 221-240, https://doi.org/10.5194/essd-11-221-2019
    Publication Date: 2023-09-16
    Description: Ground-based observations of atmospheric variables are necessary to progressively improve global climate models. Observed data can be used for model evaluation and to develop or tune process models. In arctic permafrost regions, climate-carbon feedbacks might potentially be intense. Therefore, increased efforts to better represent these regions in global climate models have been made in recent years. We present a multiannual time series of soil-atmosphere carbon dioxide fluxes measured in situ with the eddy covariance technique in the Siberian Arctic (72° 22' N, 126° 30' E). The site is part of the international network of carbon dioxide flux observation stations (FLUXNET, Site ID: Ru-Sam). The data set includes consistently processed fluxes based on concentration measurements of closed path and open path gas analyzers. With parallel records from both sensor types, we were able to apply a site-specific correction to open path fluxes. This correction is necessary due to a deterioration of data, caused by heat generated by the electronics of open path gas analyzers. Parameterizing this correction for subperiods of distinct sensor setups yielded good agreement between open and closed path fluxes. We compiled a long-term (2002 to 2017) carbon dioxide flux time series that we additionally gap-filled with a standardized approach.
    Keywords: Carbon dioxide, flux; Carbon dioxide, flux, closed path; Carbon dioxide, flux, closed path, quality classes; Carbon dioxide, flux, open path; Carbon dioxide, flux, open path, quality classes; Carbon dioxide, flux, quality classes; Carbon dioxide, flux, standard deviation; DATE/TIME; Date/Time local; Eddy covariance footprint, contribution of surface class; Ru-Sam; Siberian Arctic
    Type: Dataset
    Format: text/tab-separated-values, 1782160 data points
    Location Call Number Limitation Availability
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  • 14
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    PANGAEA
    In:  Supplement to: Boike, Julia; Georgi, C; Kirilin, G; Muster, Sina; Abramova, Katya; Fedorova, Irina V; Chetverova, Antonina; Grigoriev, Mikhail N; Bornemann, Niko; Langer, Moritz (2015): Thermal processes of thermokarst lakes in the continuous permafrost zone of northern Siberia – observations and modeling (Lena River Delta, Siberia). Biogeosciences, 12(20), 5941-5965, https://doi.org/10.5194/bg-12-5941-2015
    Publication Date: 2024-01-18
    Description: Thermokarst lakes are typical features of the northern permafrost ecosystems, and play an important role in the thermal exchange between atmosphere and subsurface. The objective of this study is to describe the main thermal processes of the lakes and to quantify the heat exchange with the underlying sediments. The thermal regimes of five lakes located within the continuous permafrost zone of northern Siberia (Lena River Delta) were investigated using hourly water temperature and water level records covering a 3-year period (2009-2012), together with bathymetric survey data. The lakes included thermokarst lakes located on Holocene river terraces that may be connected to Lena River water during spring flooding, and a thermokarst lake located on deposits of the Pleistocene Ice Complex. Lakes were covered by ice up to 2 m thick that persisted for more than 7 months of the year, from October until about mid-June. Lake-bottom temperatures increased at the start of the ice-covered period due to upward-directed heat flux from the underlying thawed sediment. Prior to ice break-up, solar radiation effectively warmed the water beneath the ice cover and induced convective mixing. Ice break-up started at the beginning of June and lasted until the middle or end of June. Mixing occurred within the entire water column from the start of ice break-up and continued during the ice-free periods, as confirmed by the Wedderburn numbers, a quantitative measure of the balance between wind mixing and stratification that is important for describing the biogeochemical cycles of lakes. The lake thermal regime was modeled numerically using the FLake model. The model demonstrated good agreement with observations with regard to the mean lake temperature, with a good reproduction of the summer stratification during the ice-free period, but poor agreement during the ice-covered period. Modeled sensitivity to lake depth demonstrated that lakes in this climatic zone with mean depths 〉 5 m develop continuous stratification in summer for at least 1 month. The modeled vertical heat flux across the bottom sediment tends towards an annual mean of zero, with maximum downward fluxes of about 5 W/m**2 in summer and with heat released back into the water column at a rate of less than 1 W/m**2 during the ice-covered period. The lakes are shown to be efficient heat absorbers and effectively distribute the heat through mixing. Monthly bottom water temperatures during the ice-free period range up to 15 °C and are therefore higher than the associated monthly air or ground temperatures in the surrounding frozen permafrost landscape. The investigated lakes remain unfrozen at depth, with mean annual lake-bottom temperatures of between 2.7 and 4 °C.
    Keywords: air temperature; Arctic Tundra; atmospheric radiation; Bathymetry; Changing Permafrost in the Arctic and its Global Effects in the 21st Century; humidity; Lake/Pond; PAGE21; river delta; water temperature; wind speed
    Type: Dataset
    Format: application/zip, 8 datasets
    Location Call Number Limitation Availability
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  • 15
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    PANGAEA
    In:  Supplement to: Morgenstern, Anne; Ulrich, Mathias; Günther, Frank; Roessler, Sebastian; Fedorova, Irina V; Rudaya, Natalia; Wetterich, Sebastian; Boike, Julia; Schirrmeister, Lutz (2013): Evolution of thermokarst in East Siberian ice-rich permafrost: A case study. Geomorphology, 201, 363-379, https://doi.org/10.1016/j.geomorph.2013.07.011
    Publication Date: 2024-01-18
    Description: Thermokarst lakes and basins are major components of ice-rich permafrost landscapes in East Siberian coastal lowlands and are regarded as indicators of regional climatic changes. We investigate the temporal and spatial dynamics of a 7.5 km**2, partly drained thermokarst basin (alas) using field investigations, remote sensing, Geographic Information Systems (GIS), and sediment analyses. The evolution of the thermokarst basin proceeded in two phases. The first phase started at the Pleistocene/Holocene transition (13 to 12 ka BP) with the initiation of a primary thermokarst lake on the Ice Complex surface. The lake expanded and persisted throughout the early Holocene before it drained abruptly about 5.7 ka BP, thereby creating a 〉 20 m deep alas with residual lakes. The second phase (5.7 ka BP to present) is characterized by alternating stages of lower and higher thermokarst intensity within the alas that were mainly controlled by local hydrological and relief conditions and accompanied by permafrost aggradation and degradation. It included diverse concurrent processes like lake expansion and stepwise drainage, polygonal ice-wedge growth, and the formation of drainage channels and a pingo, which occurred in different parts of the alas. This more dynamic thermokarst evolution resulted in a complex modern thermokarst landscape. However, on the regional scale, the changes during the second evolutionary phase after drainage of the initial thermokarst lakes were less intense than the early Holocene extensive thermokarst development in East Siberian coastal lowlands as a result of a significant regional change to warmer and wetter climate conditions.
    Keywords: AWI_PerDyn; Permafrost Research (Periglacial Dynamics) @ AWI
    Type: Dataset
    Format: application/zip, 2 datasets
    Location Call Number Limitation Availability
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  • 16
    Publication Date: 2024-01-18
    Keywords: AWI Arctic Land Expedition; Comment of event; Cross sectional area; Date/Time of event; Depth, bathymetric; Depth, bottom/max; Event label; Flow velocity, water; Flow velocity, water, maximum; Gauge station; GS; L08-01H-1; L08-02H-1; L08-02H-2; L08-03-1; L08-12H-1; Laptev Sea System; Latitude of event; Lena2008; Lena Delta, Siberia, Russia; Longitude of event; LSS; River, flux rate, total suspended matter; River discharge; RU-Land_2008_Lena; Turbidity; Water level; Width
    Type: Dataset
    Format: text/tab-separated-values, 50 data points
    Location Call Number Limitation Availability
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  • 17
    Publication Date: 2024-01-18
    Keywords: AWI Arctic Land Expedition; Comment of event; Depth, bottom/max; Event label; Flow velocity, water, maximum; Gauge station; GS; L04-01H-1; L04-01H-2; L04-02-1; L04-02H-1; L04-03-1; L04-03-2; Laptev Sea System; Latitude of event; Lena2004; Lena Delta, Siberia, Russia; Longitude of event; LSS; River, flux rate, total suspended matter; River discharge; RU-Land_2004_Lena; Turbidity; Width
    Type: Dataset
    Format: text/tab-separated-values, 32 data points
    Location Call Number Limitation Availability
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  • 18
    Publication Date: 2024-01-18
    Keywords: AWI Arctic Land Expedition; Comment of event; Cross sectional area; Event label; Flow velocity, water, maximum; Gauge station; GS; L12-01-1; L12-07-1; L12-08-1; L12-09-1; L12-10-1; L12-11-1; L12-2H-1; L12-3H-1; L12-4H-1; L12-5H-1; L12-6H-1; Laptev Sea System; Latitude of event; Lena2012; Lena Delta, Siberia, Russia; Longitude of event; LSS; River discharge; RU-Land_2012_Lena
    Type: Dataset
    Format: text/tab-separated-values, 33 data points
    Location Call Number Limitation Availability
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  • 19
    Publication Date: 2024-01-18
    Keywords: Absorption coefficient, colored dissolved organic matter at 254 nm; Absorption coefficient, colored dissolved organic matter at 260 nm; Absorption coefficient, colored dissolved organic matter at 350 nm; Absorption coefficient, colored dissolved organic matter at 375 nm; Absorption coefficient, colored dissolved organic matter at 400 nm; Absorption coefficient, colored dissolved organic matter at 412 nm; Absorption coefficient, colored dissolved organic matter at 440 nm; Absorption coefficient, colored dissolved organic matter at 443 nm; AWI_Envi; AWI_Perma; AWI Arctic Land Expedition; Date/Time of event; DEPTH, water; Event label; Latitude of event; LD14_01; LD14_02; LD14_03; LD14_04; LD14_05; LD14_06; LD14_07; LD14_08; LD14_09; LD14_10; LD14_11; LD14_12; LD14_13; LD14_14; LD14_15; LD14_16; LD14_19; LD14_24; LD14_36; LD14_37; LD14_41; LD14_42; LD14_44; LD14_52; LD14_53; LD14_54; LD14_A_15; LD14_A_24; LD14_A_55; LD14_A_56; LD14_A_57; LD14_B_20; LD14_B_27; LD14_T_10; LD14_T_11; LD14_T_12; Location of event; Longitude of event; Main Channel, Lena Delta, Siberia, Russia; MULT; Multiple investigations; Olenekskaya Channel, Lena Delta, Siberia, Russia; Permafrost Research; Polar Terrestrial Environmental Systems @ AWI; RU-Land_2014_Lena; Sardakhskaya Channel, Lena Delta, Siberia, Russia; Small Channel, Lena Delta, Siberia, Russia; SOB14_A_10; SOB14_A_11; SOB14_A_53; Spectral slope of colored dissolved organic matter absorption, 275-295 nm; Spectral slope of colored dissolved organic matter absorption, 300-500 nm; Spectral slope of colored dissolved organic matter absorption, 350-400 nm; Spectral slope of colored dissolved organic matter absorption ratio
    Type: Dataset
    Format: text/tab-separated-values, 468 data points
    Location Call Number Limitation Availability
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  • 20
    Publication Date: 2024-01-18
    Keywords: Absorption coefficient, colored dissolved organic matter at 254 nm; Absorption coefficient, colored dissolved organic matter at 260 nm; Absorption coefficient, colored dissolved organic matter at 350 nm; Absorption coefficient, colored dissolved organic matter at 375 nm; Absorption coefficient, colored dissolved organic matter at 400 nm; Absorption coefficient, colored dissolved organic matter at 412 nm; Absorption coefficient, colored dissolved organic matter at 440 nm; Absorption coefficient, colored dissolved organic matter at 443 nm; AWI_Envi; AWI_Perma; Date/Time of event; DEPTH, water; Event label; Latitude of event; LD15_OlCh_090715; LD15_OlCh_110715; LD15_OlCh_130715; LD15_OlCh_150715; LD15_OlCh_170715; LD15_OlCh_170915; LD15_OlCh_190715; LD15_OlCh_220915; LD15_OlCh_230715; LD15_OlCh_250715; LD15_OlCh_270715; LD15_OlCh_310715; Location of event; Longitude of event; Olenekskaya Channel, Lena Delta, Siberia, Russia; Permafrost Research; Polar Terrestrial Environmental Systems @ AWI; Spectral slope of colored dissolved organic matter absorption, 275-295 nm; Spectral slope of colored dissolved organic matter absorption, 300-500 nm; Spectral slope of colored dissolved organic matter absorption, 350-400 nm; Spectral slope of colored dissolved organic matter absorption ratio
    Type: Dataset
    Format: text/tab-separated-values, 144 data points
    Location Call Number Limitation Availability
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