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  • Data  (3)
  • Antarctica; AWI_Glac; Glaciology @ AWI  (2)
  • 25% quantile; 75% quantile; 79°N Glacier; 95% quantile; ApRES; Autonomous phase-sensitive radio-echo sounder; AWI Arctic Land Expedition; Basal melt rates; CalvDis2022; CalvDis2022_ApRES; CalvDis2023; CalvDis2023_ApRES; DATE/TIME; GL-Land_2017_iGRIFF; GL-Land_2018_iGRIFF; GL-Land_2022_CalvDis; GL-Land_2023_CalvDis; Greenland; Greenland - Ice Sheet/Ocean Interaction: From process understanding to an analysis of the regional system; GROCE; ICEM; Ice measurement; Ice thickness; iGRIFF_79N_glacier_2017; iGRIFF_79N_glacier_2018; iGRIFF_ApRES3; iGRIFF 79°N Glacier Expedition; Median; Melt rate; Nioghalvfjerdsfjorden Glacier; Northeast Greenland  (1)
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  • Data  (3)
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  • 1
    Publication Date: 2023-03-16
    Keywords: Antarctica; AWI_Glac; Glaciology @ AWI
    Type: Dataset
    Format: application/x-netcdf, 12.8 MBytes
    Location Call Number Limitation Availability
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  • 2
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    PANGAEA
    In:  Supplement to: Humbert, Angelika; Steinhage, Daniel; Helm, Veit; Beyer, Sebastian; Kleiner, Thomas (2018): Missing Evidence of Widespread Subglacial Lakes at Recovery Glacier, Antarctica. Journal of Geophysical Research-Earth Surface, 123(11), 2802-2826, https://doi.org/10.1029/2017JF004591
    Publication Date: 2023-03-16
    Description: Recovery Glacier reaches far into the East Antarctic Ice Sheet. Recent projections point out that its dynamic behaviour has a considerable impact on future Antarctic ice loss (Golledge et al. 2017). Subglacial lakes are thought to play a major role in the initiation of the rapid ice flow (Bell et al. 2007). Satellite altimetry observations have even suggested several actively filling and draining subglacial lakes beneath the main trunk (Smith et al. 2009). We present new data of the geometry of this glacier and investigate its basal properties employing radio-echo sounding. Using ice-sheet modelling, we were able to constrain estimates of radar absorption in the ice, but uncertainties remain large. The magnitude of the basal reflection coefficient is thus still poorly known. However, its spatial variability, in conjunction with additional indicators, can be used to infer the presence of subglacial water. We find no clear evidence of water at most of the previously proposed lake sites. Especially locations where altimetry detected active lakes, do not exhibit lake characteristics in RES. We argue that lakes far upstream the main trunk are not triggering enhanced ice flow, which is also supported by modeled subglacial hydrology.
    Keywords: Antarctica; AWI_Glac; Glaciology @ AWI
    Type: Dataset
    Format: application/zip, 2 datasets
    Location Call Number Limitation Availability
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  • 3
    Publication Date: 2024-06-12
    Keywords: 25% quantile; 75% quantile; 79°N Glacier; 95% quantile; ApRES; Autonomous phase-sensitive radio-echo sounder; AWI Arctic Land Expedition; Basal melt rates; CalvDis2022; CalvDis2022_ApRES; CalvDis2023; CalvDis2023_ApRES; DATE/TIME; GL-Land_2017_iGRIFF; GL-Land_2018_iGRIFF; GL-Land_2022_CalvDis; GL-Land_2023_CalvDis; Greenland; Greenland - Ice Sheet/Ocean Interaction: From process understanding to an analysis of the regional system; GROCE; ICEM; Ice measurement; Ice thickness; iGRIFF_79N_glacier_2017; iGRIFF_79N_glacier_2018; iGRIFF_ApRES3; iGRIFF 79°N Glacier Expedition; Median; Melt rate; Nioghalvfjerdsfjorden Glacier; Northeast Greenland
    Type: Dataset
    Format: text/tab-separated-values, 10749 data points
    Location Call Number Limitation Availability
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