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  • 1
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    PANGAEA
    In:  Supplement to: van de Wal, Roderik S W; Boot, Wim; Smeets, Paul C J P; Snellen, Henk; van den Broeke, Michiel R; Oerlemans, Johannes (2012): Twenty-one years of mass balance observations along the K-transect, West-Greenland. Earth System Science Data, 4(1), 31-35, https://doi.org/10.5194/essd-4-31-2012
    Publication Date: 2023-01-13
    Description: A 21-year record is presented of surface mass balance measurements along the K-transect. The series covers the period 1990-2011. Data are available at 8 sites along a transect over an altitude range of 390 - 1850 m at approximately 67° N in West Greenland. The surface mass balance gradient is on average 3.8 x 10**-3 m w.e./m, and the mean equilibrium line altitude is 1553 m a.s.l. Only the lower 3 sites within 10 km of the margin experience a significant increasing trend in the ablation over the entire period.
    Keywords: Comment of event; DATE/TIME; Date/time end; Event label; K-transect; Mass balance in water equivalent per year; OBSE; Observation; SHR; Site-10; Site-4; Site-5; Site-6; Site-7; Site-8; Site-9; West Greenland Margin
    Type: Dataset
    Format: text/tab-separated-values, 326 data points
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  • 2
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    PANGAEA
    In:  Supplement to: Stap, Lennert Bastiaan; van de Wal, Roderik S W; de Boer, Bas; Köhler, Peter; Hoencamp, Jori H; Lohmann, Gerrit; Tuenter, Erik; Lourens, Lucas Joost (2018): Modeled influence of land ice and CO2 on polar amplification and paleoclimate sensitivity during the past 5 million years. Paleoceanography and Paleoclimatology, https://doi.org/10.1002/2017PA003313
    Publication Date: 2023-01-13
    Description: Model output of the intermediate complexity climate model CLIMBER-2 over the past 5 million years. The simulations were forced with insolation data (O), insolation and land ice data (OI), insolation and carbon dioxide data (OC) and with insolation, land ice and carbon dioxide data (OIC). Sheet 1 contains the main results: northern hemispheric (30-90 deg N), southern hemispheric (30-90 deg S) and global temperatures. Sheet 2 contains the land ice and carbon dioxide forcing in terms of globally averaged radiative forcing. Details are given in the publication. More information or data can be obtained by contacting L.B. Stap (lennert.stap@awi.de).
    Type: Dataset
    Format: application/vnd.openxmlformats-officedocument.spreadsheetml.sheet, 538.1 kBytes
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  • 3
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    PANGAEA
    In:  Supplement to: Köhler, Peter; de Boer, Bas; von der Heydt, Anna S; Stap, Lennert Bastiaan; van de Wal, Roderik S W (2015): On the state dependency of the equilibrium climate sensitivity during the last 5 million years. Climate of the Past, 11(12), 1801-1823, https://doi.org/10.5194/cp-11-1801-2015
    Publication Date: 2023-01-13
    Description: It is still an open question how equilibrium warming in response to increasing radiative forcing – the specific equilibrium climate sensitivity S – depends on background climate. We here present palaeodata-based evidence on the state dependency of S, by using CO2 proxy data together with a 3-D ice-sheet-model-based reconstruction of land ice albedo over the last 5 million years (Myr). We find that the land ice albedo forcing depends non-linearly on the background climate, while any non-linearity of CO2 radiative forcing depends on the CO2 data set used. This non-linearity has not, so far, been accounted for in similar approaches due to previously more simplistic approximations, in which land ice albedo radiative forcing was a linear function of sea level change. The latitudinal dependency of ice-sheet area changes is important for the non-linearity between land ice albedo and sea level. In our set-up, in which the radiative forcing of CO2 and of the land ice albedo (LI) is combined, we find a state dependence in the calculated specific equilibrium climate sensitivity, S[CO2,LI], for most of the Pleistocene (last 2.1 Myr). During Pleistocene intermediate glaciated climates and interglacial periods, S[CO2,LI] is on average ~ 45 % larger than during Pleistocene full glacial conditions. In the Pliocene part of our analysis (2.6–5 Myr BP) the CO2 data uncertainties prevent a well-supported calculation for S[CO2,LI], but our analysis suggests that during times without a large land ice area in the Northern Hemisphere (e.g. before 2.82 Myr BP), the specific equilibrium climate sensitivity, S[CO2,LI], was smaller than during interglacials of the Pleistocene. We thus find support for a previously proposed state change in the climate system with the widespread appearance of northern hemispheric ice sheets. This study points for the first time to a so far overlooked non-linearity in the land ice albedo radiative forcing, which is important for similar palaeodata-based approaches to calculate climate sensitivity. However, the implications of this study for a suggested warming under CO2 doubling are not yet entirely clear since the details of necessary corrections for other slow feedbacks are not fully known and the uncertainties that exist in the ice-sheet simulations and global temperature reconstructions are large.
    Type: Dataset
    Format: application/zip, 79.1 kBytes
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  • 4
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    PANGAEA
    In:  Supplement to: de Boer, Bas; Lourens, Lucas Joost; van de Wal, Roderik S W (2014): Persistent 400,000-year variability of Antarctic ice volume and the carbon cycle is revealed throughout the Plio-Pleistocene. Nature Communications, 5, https://doi.org/10.1038/ncomms3999
    Publication Date: 2023-01-13
    Description: Marine sediment records from the Oligocene and Miocene reveal clear 400,000-year (400-kyr) climate cycles related to variations in orbital eccentricity. These cycles are also observed in the Plio-Pleistocene records of the global carbon cycle. However they are absent in the Late Pleistocene ice-age record over the past 1.5 million years. Here, we present a simulation of global ice volume over the past 5 million years with a coupled system of four 3-D ice-sheet models. Our simulation shows that the 400-kyr long eccentricity cycles of Antarctica vary coherently with d13C records during the Pleistocene suggesting that they drive the long-term carbon cycle changes throughout the past 35 million years. The 400-kyr response of Antarctica is eventually suppressed by the dominant 100-kyr glacial cycles of the large ice sheets in the Northern Hemisphere (NH).
    Type: Dataset
    Format: application/vnd.openxmlformats-officedocument.spreadsheetml.sheet, 5.4 MBytes
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  • 5
    Publication Date: 2023-01-30
    Description: The data file contains projections for area and mass change of glaciers on the global scale, from 11 different glacier models, forced by 10 different climate models, under 4 different scenarios. The values are specified by regions, following the region definition of the Randolph Glacier Inventory (https://www.glims.org/RGI/). Values are given annually for the years 2000 to 2100. The data were produced in the second experiment of the Glacier Model Intercomparison Project, based on standardized boundary and initial conditions (http://www.climate-cryosphere.org/mips/glaciermip/activities-experiments).
    Keywords: glacier; intercomparison; projection; sea level; sea-level rise
    Type: Dataset
    Format: application/x-netcdf, 15 MBytes
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  • 6
    Publication Date: 2023-01-30
    Description: We present 18 years (2003-2021) of automatic weather station (AWS) data, collected along the K-transect near Kangerlussuaq in west Greenland. The transect runs from east to west, roughly perpendicular to the ice sheet edge at about 67° N. The K-transect originated from the Greenland Ice Margin Experiments (GIMEX), held in the summers of 1990 and 1991. Until recently, surface mass balance and ice velocity measurements were performed at nine locations along the K-transect, of which four are equipped with AWS: two in the ablation zone at approximately 500 m and 1,000 m asl, one at the approximate equilibrium-line altitude (~1,500 m asl), and one in the lower accumulation zone (~1,850 m asl) at distances of 5, 38, 88, and 140 km from the ice edge, respectively. Here, we present (mostly) half hourly UTC based AWS measurements from these four sites containing temperature/humidity, windspeed/direction, all four radiation components and atmospheric pressure. All data are corrected and quality controlled, for details about this procedure please consult doi:10.1080/15230430.2017.1420954.
    Keywords: automatic weather station; Greenland; K-transect
    Type: Dataset
    Format: application/zip, 64 datasets
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  • 7
    Publication Date: 2023-01-30
    Description: We present results from simulations of the Miocene Antarctic ice sheet, that were performed using the 3D thermodynamical ice-sheet model IMAU-ICE (v1.1.1-MIO). Five steady-state present-day simulations were conducted for reference (PI_ref), and 12 experiments using Miocene settings. Each Miocene experiment comprises 11 steady-state and 4 transient simulations. In the README file, the experiments and simulations are listed. IMAU-ICE was run using a 40x40km grid covering the Antarctic continent. Initial conditions were obtained from reconstructions of the Antarctic bathymetry and bedrock topography pertaining to 23 to 24 million years (Myr) ago (dataset doi:10.1594/PANGAEA.923109). The simulations were forced by climate input data obtained from GENESIS simulations with varying CO2 levels (280 to 840 ppm) and Antarctic ice sheet cover (no ice to a large East-Antarctic ice sheet), and with present-day insolation. We utilized a matrix interpolation method to construct the time-varying climate forcing, based on the prescribed CO2 levels and ice cover simulated by IMAU-ICE. For each simulation, we provide the run script, 1D output variables including CO2 level and the sea level contribution of the Antarctic ice sheet, and 3D output variables including ice thickness, bedrock and surface height, surface mass balance, basal mass balance, ice velocities, and ice temperatures. For more information, please contact L.B. Stap at l.b.stap@uu.nl.
    Keywords: Antarctica; Antarctic Ice Sheet; ice-sheet-atmosphere interaction; ice shelves; Miocene; Paleoclimate
    Type: Dataset
    Format: application/zip, 2.5 GBytes
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  • 8
    Publication Date: 2023-02-12
    Keywords: Acoustic height ranger, Campbell, SR50; Anemometer, R.M. Young 05103; automatic weather station; Automatic weather station; AWS; Barometer, Vaisala, PTB 101B; Datalogger Campbell CR10X; DATE/TIME; Greenland; Greenland icesheet; Height, relative; Humidity, relative; Identification; K-transect; K-transect_AWS5; Logger voltage; Long-wave downward radiation; Long-wave upward radiation; Net radiometer, Kipp & Zonen, CNR1; Pressure, atmospheric; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Temperature, air; Temperature, body, radiometer; Temperature, technical; Thermometer/Hygrometer, Vaisala, HMP45; Wind direction; Wind speed
    Type: Dataset
    Format: text/tab-separated-values, 244806 data points
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  • 9
    Publication Date: 2023-02-12
    Keywords: Acoustic height ranger, Campbell, SR50; Anemometer, R.M. Young 05103; automatic weather station; Automatic weather station; AWS; Barometer, Vaisala, PTB 101B; Datalogger Campbell CR10X; DATE/TIME; Greenland; Greenland icesheet; Height, relative; Humidity, relative; Identification; K-transect; K-transect_AWS5; Logger voltage; Long-wave downward radiation; Long-wave upward radiation; Net radiometer, Kipp & Zonen, CNR1; Pressure, atmospheric; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Temperature, air; Temperature, body, radiometer; Temperature, technical; Thermometer/Hygrometer, Vaisala, HMP45; Wind direction; Wind speed
    Type: Dataset
    Format: text/tab-separated-values, 243861 data points
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  • 10
    Publication Date: 2023-02-12
    Keywords: Acoustic height ranger, Campbell, SR50; Anemometer, R.M. Young 05103; automatic weather station; Automatic weather station; AWS; Barometer, Vaisala, PTB 101B; Datalogger Campbell CR10X; DATE/TIME; Greenland; Greenland icesheet; Height, relative; Humidity, relative; Identification; K-transect; K-transect_AWS6; Logger voltage; Long-wave downward radiation; Long-wave upward radiation; Net radiometer, Kipp & Zonen, CNR1; Pressure, atmospheric; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Temperature, air; Temperature, body, radiometer; Temperature, technical; Thermometer/Hygrometer, Vaisala, HMP45; Wind direction; Wind speed
    Type: Dataset
    Format: text/tab-separated-values, 165223 data points
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