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  • PANGAEA  (26)
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  • 1
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    PANGAEA
    In:  EPIC3Geographical Research Institute, Hungarian Academy of SCiences, Budapest, Gustav Fischer Verlag, Stuttgart Jena New York., Bremerhaven, PANGAEA
    Publication Date: 2019-07-17
    Repository Name: EPIC Alfred Wegener Institut
    Type: PANGAEA Documentation , notRev
    Format: application/pdf
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  • 2
    Publication Date: 2019-07-17
    Repository Name: EPIC Alfred Wegener Institut
    Type: PANGAEA Documentation , notRev
    Format: application/pdf
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  • 3
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    PANGAEA
    In:  EPIC3Freshwater Contamination (Proceedings of Rabat Symposium S4, Aprii-May 1997) IAHS Publ. no. 243,., Bremerhaven, PANGAEA
    Publication Date: 2019-07-17
    Repository Name: EPIC Alfred Wegener Institut
    Type: PANGAEA Documentation , notRev
    Format: application/pdf
    Format: application/pdf
    Format: application/vnd.ms-excel
    Format: application/pdf
    Format: application/pdf
    Format: application/pdf
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  • 4
    Publication Date: 2024-05-14
    Keywords: Aero_1; Aero_core1; AGE; Age, error; Age, lower confidence level; Age, upper confidence level; Age model; Alaska, USA; Analysis; Antoine_Lake; Baillie_Bog; Bathurst_Island; Biological sample; BIOS; Bonanza_Creek; Bulmer_Lake; Burgistoye_Bog; Bylot_Island; Campbell_Creek; Canada; Canadian Arctic; Chernaya_Gorka; Chorkurdakh; College_Bog; Comment; Core; CSAT; DEPTH, sediment/rock; DOT; Ennadai_Lake; Event label; Finland; Fosheim; Grafe_River; Height above sea floor/altitude; Herchmer; Horn_Plateau; Identification; Innoko; Inuvik; Inuvik_East; James_Bay_Transect; Jean-Marie_Creek; Joey_Lake; Kazache; KFA906; Khosedayu; Kineosheo; KM184; Koyukuk; KUJU_PD2; KUJU-PD2_core1; Kukjuk; Kunyok_bog; Kwakwatanikapistikw; Kwethluk; La_Grande_Riviere-LG1; La_Grande_Riviere-LG2; La_Grande_Riviere-LG3; Laboratory code/label; Lac_des_Becassines; Lac_des_Cygnes_Mountain; Lac_Le_Caron; Lac_Le_Caron_coreCentral; Lama_Lake; LATITUDE; LOA_T1; LOA_T5; LOA_T6; LONGITUDE; LVPS_4-5B; MacKenzie_Delta; Manitoba, Canada; Martin_River; McClintock; MON; Monitoring; Mosaik; Mosaik_coreCentral; MULT; Multiple investigations; N4-73; NormanWells; Nuikluk; Number; Nyulsaveito_Lake; OBSE; Observation; Ortino_peat_pl; Ours; OUTCROP; Outcrop sample; PEATC; Peat corer; Petersville; Petersville_corePE08-MC; PF-3; PF-8; Polybog; Pur-Taz; Pyasina; QUEEN_Exped; Radisson; Rainbow_Lake; Reference/source; Remote sensing (Corona); Rogovaya; Russia; Rybachiya_bog; Sasapimakwananistik; Seida; Selwyn_core1; Selwyn_Lake; Seward_Peninsula; Sheldrake; Site; Slave_core1; Slave_Lake; Southern_Piper_Pass; Sterne; Stordalen_1; Stordalen_core1; Sugluk; Suolakh; Sweden; T27C; T28A; T35A-B; T36C-D; T5A; TC-01; TFBC; Thelon-Kazan_Peatland; Three_Day_Lake; Tiksi; Town_site; Tuktoyaktuk; Umiakoviarusek; United States of America; Upper_Pinto; Upper_Pinto_core1; Usa River basin, Northeast European Russia; Usinsk_Mire; Vaisjeaggi1/Va-l; Western Siberia; Willow_Lake_River; Wrigley_Ferry; Y1-73; Zhukovskoe; ZOL-1970-1; ZOL-1970-10; ZOL-1970-11; ZOL-1970-12; ZOL-1970-13; ZOL-1970-14; ZOL-1970-15; ZOL-1970-16; ZOL-1970-17; ZOL-1970-18; ZOL-1970-19; ZOL-1970-2; ZOL-1970-20; ZOL-1970-21; ZOL-1970-22; ZOL-1970-23; ZOL-1970-24; ZOL-1970-25; ZOL-1970-26; ZOL-1970-27; ZOL-1970-28; ZOL-1970-29; ZOL-1970-3; ZOL-1970-30; ZOL-1970-31; ZOL-1970-32; ZOL-1970-4; ZOL-1970-5; ZOL-1970-6; ZOL-1970-7; ZOL-1970-8; ZOL-1970-9; ZOL-1971-1; ZOL-1971-10; ZOL-1971-11; ZOL-1971-12; ZOL-1971-13; ZOL-1971-14; ZOL-1971-15; ZOL-1971-16; ZOL-1971-17; ZOL-1971-18; ZOL-1971-19; ZOL-1971-2; ZOL-1971-20; ZOL-1971-21; ZOL-1971-22; ZOL-1971-23; ZOL-1971-24; ZOL-1971-25; ZOL-1971-26; ZOL-1971-27; ZOL-1971-28; ZOL-1971-29; ZOL-1971-3; ZOL-1971-30; ZOL-1971-31; ZOL-1971-32; ZOL-1971-33; ZOL-1971-35; ZOL-1971-36; ZOL-1971-4; ZOL-1971-5; ZOL-1971-6; ZOL-1971-7; ZOL-1971-8; ZOL-1971-9; ZOL-1972-1; ZOL-1972-10; ZOL-1972-11; ZOL-1972-12; ZOL-1972-13; ZOL-1972-14; ZOL-1972-15; ZOL-1972-16; ZOL-1972-17; ZOL-1972-18; ZOL-1972-19; ZOL-1972-2; ZOL-1972-20; ZOL-1972-21; ZOL-1972-22; ZOL-1972-23; ZOL-1972-24; ZOL-1972-25; ZOL-1972-26; ZOL-1972-27; ZOL-1972-28; ZOL-1972-3; ZOL-1972-30; ZOL-1972-4; ZOL-1972-6; ZOL-1972-7; ZOL-1972-8; ZOL-1972-9; ZOL-1973-1; ZOL-1973-10; ZOL-1973-11; ZOL-1973-12; ZOL-1973-13; ZOL-1973-14; ZOL-1973-15; ZOL-1973-16; ZOL-1973-17; ZOL-1973-18; ZOL-1973-19; ZOL-1973-20; ZOL-1973-21; ZOL-1973-22; ZOL-1973-23; ZOL-1973-24; ZOL-1973-5; ZOL-1973-7; ZOL-1973-8; ZOL-1973-9; ZOL-1975-10; ZOL-1976-8; ZOL-1977-20; ZOL-1977-4; ZOL-1981-12; ZOL-1981-21; ZOL-1981-34; ZOL-1982-12; ZOL-1982-13; ZOL-1982-17; ZOL-1982-18; ZOL-1982-20; ZOL-1982-24; ZOL-1982-29; ZOL-1982-30; ZOL-1982-31; ZOL-1982-32; ZOL-1982-33; ZOL-1982-34; ZOL-1982-35; ZOL-1982-36; ZOL-1982-37; ZOL-1982-38; ZOL-1982-39; ZOL-1982-40; ZOL-1982-41; ZOL-1982-42; ZOL-1982-43; ZOL-1982-44; ZOL-1982-45; ZOL-1982-46; ZOL-1982-47; ZOL-1982-48; ZOL-1982-49; ZOL-1982-50; ZOL-1982-51; ZOL-1982-52; ZOL-1982-53; ZOL-1982-54; ZOL-1982-55; ZOL-1982-56; ZOL-1982-57; ZOL-1982-58; ZOL-1982-59; ZOL-1982-6; ZOL-1982-60; ZOL-1982-61; ZOL-1982-62; ZOL-1982-63; ZOL-1982-64; ZOL-1982-65; ZOL-1984-10; ZOL-1984-11; ZOL-1984-12; ZOL-1984-13; ZOL-1984-14; ZOL-1984-15; ZOL-1984-16; ZOL-1984-17; ZOL-1984-18; ZOL-1984-19; ZOL-1984-20; ZOL-1984-39; ZOL-1984-40; ZOL-1984-41; ZOL-1984-42; ZOL-1984-43; ZOL-1984-44; ZOL-1984-45; ZOL-1984-46; ZOL-1984-47; ZOL-1984-48; ZOL-1984-49; ZOL-1984-50; ZOL-1984-51; ZOL-1984-52; ZOL-1984-53; ZOL-1984-54; ZOL-1984-55; ZOL-1984-7; ZOL-1984-8; ZOL-1984-9; ZOL-1989-1; ZOL-1989-10; ZOL-1989-11; ZOL-1989-13; ZOL-1989-14; ZOL-1989-15; ZOL-1989-16; ZOL-1989-17; ZOL-1989-18; ZOL-1989-19; ZOL-1989-3; ZOL-1989-4; ZOL-1989-5; ZOL-1989-6; ZOL-1989-8; ZOL-1989-9
    Type: Dataset
    Format: text/tab-separated-values, 6266 data points
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  • 5
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    PANGAEA
    In:  Supplement to: Holme, Christian T; Gkinis, Vasileios; Vinther, Bo Møllesøe (2018): Molecular diffusion of stable water isotopes in polar firn as a proxy for past temperatures. Geochimica et Cosmochimica Acta, 225, 128-145, https://doi.org/10.1016/j.gca.2018.01.015
    Publication Date: 2024-03-18
    Description: Polar precipitation archived in ice caps contains information on past temperature conditions. Such information can be retrieved by measuring the water isotopic signals of ?18O and ?D in ice cores. These signals have been attenuated during densification due to molecular diffusion in the firn column, where the magnitude of the diffusion is isotopologoue specific and temperature dependent. By utilizing the differential diffusion signal, dual isotope measurements of d18O and dD enable multiple temperature reconstruction techniques. This study assesses how well six different methods can be used to reconstruct past surface temperatures from the diffusion-based temperature proxies. Two of the methods are based on the single diffusion lengths of d18O and dD, three of the methods employ the differential diffusion signal, while the last uses the ratio between the single diffusion lengths. All techniques are tested on synthetic data in order to evaluate their accuracy and precision. We perform a benchmark test to thirteen high resolution Holocene data sets from Greenland and Antarctica, which represent a broad range of mean annual surface temperatures and accumulation rates. Based on the benchmark test, we comment on the accuracy and precision of the methods. Both the benchmark test and the synthetic data test demonstrate that the most precise reconstructions are obtained when using the single isotope diffusion lengths, with precisions of approximately 1.0°C. In the benchmark test, the single isotope diffusion lengths are also found to reconstruct consistent temperatures with a root mean-square-deviation of 0.7°C. The techniques employing the differential diffusion signals are more uncertain, where the most precise method has a precision of 1.9°C. The diffusion length ratio method is the least precise with a precision of 13.7°C. The absolute temperature estimates from this method are also shown to be highly sensitive to the choice of fractionation factor parameterization.
    Keywords: Greenland Ice Core Projects; GRIP/GISP/NGRIP
    Type: Dataset
    Format: application/zip, 5 datasets
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  • 6
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    PANGAEA
    In:  EPIC3WOCE., Bremerhaven, PANGAEA
    Publication Date: 2019-07-17
    Repository Name: EPIC Alfred Wegener Institut
    Type: PANGAEA Documentation , notRev
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  • 7
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    PANGAEA
    In:  EPIC3WOCE., Bremerhaven, PANGAEA
    Publication Date: 2019-07-17
    Repository Name: EPIC Alfred Wegener Institut
    Type: PANGAEA Documentation , notRev
    Format: application/pdf
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  • 8
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    PANGAEA
    In:  EPIC3WOCE., Bremerhaven, PANGAEA
    Publication Date: 2019-07-17
    Repository Name: EPIC Alfred Wegener Institut
    Type: PANGAEA Documentation , notRev
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  • 9
    Publication Date: 2024-01-10
    Description: Time series data of physical oceanography (seawater conductivity, temperature, pressure, salinity) were obtained from mooring M3 on the upper part (750 m isobath) of the continental slope, just east of the Filchner Trough in the southern Weddell Sea in February 2017 - February 2021. The mooring was deployed during the WAPITI expedition on James Clark Ross (JR16004), and recovered during the COSMUS expedition with Polarstern (PS124). The attached archive contains data from 1 RCM7 (21 meters above bottom (mab herafter) and sampling interval (sint hereafter) 2h), 13 SBE56 (22,56,81,106,159,184,6508,260,285,310,335,360,385 mab, sint: 120 s), 4 SBE37 (31, 134, 209, 410 mab, sint: 600 s), 1 SBE39 (435 mab, sint: 900s). Mooring diagrams and information about data processing are provided.
    Keywords: ADCP; Antarctica; AWI_PhyOce; Continental Slope; DATE/TIME; DEPTH, water; Filchner Region; Filchner Trough; GPF 19-2_039, COSMUS; James Clark Ross; JR16004; JR16004_162; JR16004_162, PS124_14-1; LATITUDE; LONGITUDE; M3_MOOR_WeddellSea; M3, M3_MOOR_WeddellSea; MOOR; Mooring; oceanographic moorings; oceanographic time series; Physical Oceanography @ AWI; Polarstern; Pressure, water; PS124; PS124_14-1; Salinity; Temperature, water; Temperature and Salinity; WAPITI; Weddell Sea
    Type: Dataset
    Format: text/tab-separated-values, 15513098 data points
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  • 10
    Publication Date: 2024-01-10
    Description: Time series data of ocean current velocities were obtained from mooring M3 on the upper part (750 m isobath) of the continental slope, just east of the Filchner Trough in the southern Weddell Sea in February 2017 - February 2021. The mooring was deployed during the WAPITI expedition on James Clark Ross (JR16004), and recovered during the COSMUS expedition with Polarstern (PS124). The attached archive contains data from 1 RDI ADCP 75 kHz (235 mab, upwardlooking, with sampling intervall: 2h. Mooring diagrams and information about data processing are provided.
    Keywords: ADCP; Antarctica; AWI_PhyOce; Continental Slope; Current velocity, east-west; Current velocity, north-south; DATE/TIME; DEPTH, water; Filchner Region; Filchner Trough; GPF 19-2_039, COSMUS; James Clark Ross; JR16004; JR16004_162; JR16004_162, PS124_14-1; LATITUDE; LONGITUDE; M3_MOOR_WeddellSea; M3, M3_MOOR_WeddellSea; MOOR; Mooring; oceanographic moorings; oceanographic time series; Physical Oceanography @ AWI; Polarstern; PS124; PS124_14-1; Temperature and Salinity; WAPITI; Weddell Sea
    Type: Dataset
    Format: text/tab-separated-values, 387804 data points
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