Reconstructing Greenland Ice Sheet meltwater discharge through the Watson River (1949–2017)

Ice-sheet melting is the primary water source for the proglacial Watson River in southern west Greenland. Discharge from the large, approximately 12,000 km 2 ice-sheet catchment draining through the Watson River has been monitored since 2006. While this record is of respectable length for a Greenlan...

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Main Authors: Dirk van As (5125391), Bent Hasholt (5390426), Andreas P. Ahlstrøm (5390420), Jason E. Box (5179112), John Cappelen (5390429), William Colgan (5179115), Robert S. Fausto (5179121), Sebastian H. Mernild (5390423), Andreas Bech Mikkelsen (5390432), Brice P.Y. Noël (5390408), Dorthe Petersen (5390417), Michiel R. van den Broeke (5125394)
Format: Dataset
Language:unknown
Published: 2019
Subjects:
Online Access:https://doi.org/10.6084/m9.figshare.6510104.v3
id ftsmithonian:oai:figshare.com:article/6510104
record_format openpolar
spelling ftsmithonian:oai:figshare.com:article/6510104 2023-05-15T16:26:05+02:00 Reconstructing Greenland Ice Sheet meltwater discharge through the Watson River (1949–2017) Dirk van As (5125391) Bent Hasholt (5390426) Andreas P. Ahlstrøm (5390420) Jason E. Box (5179112) John Cappelen (5390429) William Colgan (5179115) Robert S. Fausto (5179121) Sebastian H. Mernild (5390423) Andreas Bech Mikkelsen (5390432) Brice P.Y. Noël (5390408) Dorthe Petersen (5390417) Michiel R. van den Broeke (5125394) 2019-04-05T08:50:39Z https://doi.org/10.6084/m9.figshare.6510104.v3 unknown https://figshare.com/articles/dataset/Reconstructing_Greenland_Ice_Sheet_meltwater_discharge_through_the_Watson_River_1949_2017_/6510104 doi:10.6084/m9.figshare.6510104.v3 CC BY 4.0 CC-BY Medicine Ecology Sociology Inorganic Chemistry Infectious Diseases Environmental Sciences not elsewhere classified Biological Sciences not elsewhere classified Greenland Ice Sheet melt climate change measurements model validation Kangerlussuaq Dataset 2019 ftsmithonian https://doi.org/10.6084/m9.figshare.6510104.v3 2022-01-06T11:54:06Z Ice-sheet melting is the primary water source for the proglacial Watson River in southern west Greenland. Discharge from the large, approximately 12,000 km 2 ice-sheet catchment draining through the Watson River has been monitored since 2006. While this record is of respectable length for a Greenland monitoring effort, it is too short to resolve climate signals. Therefore, we use observed Tasersiaq lake discharge and Kangerlussuaq air temperature to reconstruct annual Watson River discharge back to 1949. The resulting sixty-five-year record shows that average ice-sheet runoff since 2003 has roughly increased by 46 percent relative to the 1949–2002 period. The time series suggests that the five top-ranking discharge years occurred since 2003. The three top-ranking discharge years (2010, 2012, and 2016) are characterized by melt seasons that were both long and intense. Interannual variability more than doubled since 2003, which we speculate to be because of hypsometric runoff amplification enhanced by albedo decrease and decreased firn permeability. The reconstructed time series proves to be a valuable tool for long-term evaluation of Greenland Ice Sheet surface mass balance models. A comparison with freshwater fluxes calculated by a downscaled version of the regional climate model RACMO2 reveals high correlation ( r = 0.89), and also shows that the model possibly underestimates runoff by up to 26 percent in above-average melt years. Dataset Greenland Ice Sheet Kangerlussuaq Unknown Greenland Kangerlussuaq ENVELOPE(-55.633,-55.633,72.633,72.633) Tasersiaq ENVELOPE(-50.583,-50.583,66.200,66.200)
institution Open Polar
collection Unknown
op_collection_id ftsmithonian
language unknown
topic Medicine
Ecology
Sociology
Inorganic Chemistry
Infectious Diseases
Environmental Sciences not elsewhere classified
Biological Sciences not elsewhere classified
Greenland Ice Sheet
melt
climate change
measurements
model validation
Kangerlussuaq
spellingShingle Medicine
Ecology
Sociology
Inorganic Chemistry
Infectious Diseases
Environmental Sciences not elsewhere classified
Biological Sciences not elsewhere classified
Greenland Ice Sheet
melt
climate change
measurements
model validation
Kangerlussuaq
Dirk van As (5125391)
Bent Hasholt (5390426)
Andreas P. Ahlstrøm (5390420)
Jason E. Box (5179112)
John Cappelen (5390429)
William Colgan (5179115)
Robert S. Fausto (5179121)
Sebastian H. Mernild (5390423)
Andreas Bech Mikkelsen (5390432)
Brice P.Y. Noël (5390408)
Dorthe Petersen (5390417)
Michiel R. van den Broeke (5125394)
Reconstructing Greenland Ice Sheet meltwater discharge through the Watson River (1949–2017)
topic_facet Medicine
Ecology
Sociology
Inorganic Chemistry
Infectious Diseases
Environmental Sciences not elsewhere classified
Biological Sciences not elsewhere classified
Greenland Ice Sheet
melt
climate change
measurements
model validation
Kangerlussuaq
description Ice-sheet melting is the primary water source for the proglacial Watson River in southern west Greenland. Discharge from the large, approximately 12,000 km 2 ice-sheet catchment draining through the Watson River has been monitored since 2006. While this record is of respectable length for a Greenland monitoring effort, it is too short to resolve climate signals. Therefore, we use observed Tasersiaq lake discharge and Kangerlussuaq air temperature to reconstruct annual Watson River discharge back to 1949. The resulting sixty-five-year record shows that average ice-sheet runoff since 2003 has roughly increased by 46 percent relative to the 1949–2002 period. The time series suggests that the five top-ranking discharge years occurred since 2003. The three top-ranking discharge years (2010, 2012, and 2016) are characterized by melt seasons that were both long and intense. Interannual variability more than doubled since 2003, which we speculate to be because of hypsometric runoff amplification enhanced by albedo decrease and decreased firn permeability. The reconstructed time series proves to be a valuable tool for long-term evaluation of Greenland Ice Sheet surface mass balance models. A comparison with freshwater fluxes calculated by a downscaled version of the regional climate model RACMO2 reveals high correlation ( r = 0.89), and also shows that the model possibly underestimates runoff by up to 26 percent in above-average melt years.
format Dataset
author Dirk van As (5125391)
Bent Hasholt (5390426)
Andreas P. Ahlstrøm (5390420)
Jason E. Box (5179112)
John Cappelen (5390429)
William Colgan (5179115)
Robert S. Fausto (5179121)
Sebastian H. Mernild (5390423)
Andreas Bech Mikkelsen (5390432)
Brice P.Y. Noël (5390408)
Dorthe Petersen (5390417)
Michiel R. van den Broeke (5125394)
author_facet Dirk van As (5125391)
Bent Hasholt (5390426)
Andreas P. Ahlstrøm (5390420)
Jason E. Box (5179112)
John Cappelen (5390429)
William Colgan (5179115)
Robert S. Fausto (5179121)
Sebastian H. Mernild (5390423)
Andreas Bech Mikkelsen (5390432)
Brice P.Y. Noël (5390408)
Dorthe Petersen (5390417)
Michiel R. van den Broeke (5125394)
author_sort Dirk van As (5125391)
title Reconstructing Greenland Ice Sheet meltwater discharge through the Watson River (1949–2017)
title_short Reconstructing Greenland Ice Sheet meltwater discharge through the Watson River (1949–2017)
title_full Reconstructing Greenland Ice Sheet meltwater discharge through the Watson River (1949–2017)
title_fullStr Reconstructing Greenland Ice Sheet meltwater discharge through the Watson River (1949–2017)
title_full_unstemmed Reconstructing Greenland Ice Sheet meltwater discharge through the Watson River (1949–2017)
title_sort reconstructing greenland ice sheet meltwater discharge through the watson river (1949–2017)
publishDate 2019
url https://doi.org/10.6084/m9.figshare.6510104.v3
long_lat ENVELOPE(-55.633,-55.633,72.633,72.633)
ENVELOPE(-50.583,-50.583,66.200,66.200)
geographic Greenland
Kangerlussuaq
Tasersiaq
geographic_facet Greenland
Kangerlussuaq
Tasersiaq
genre Greenland
Ice Sheet
Kangerlussuaq
genre_facet Greenland
Ice Sheet
Kangerlussuaq
op_relation https://figshare.com/articles/dataset/Reconstructing_Greenland_Ice_Sheet_meltwater_discharge_through_the_Watson_River_1949_2017_/6510104
doi:10.6084/m9.figshare.6510104.v3
op_rights CC BY 4.0
op_rightsnorm CC-BY
op_doi https://doi.org/10.6084/m9.figshare.6510104.v3
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