Mass balance of the Greenland and Antarctic ice sheets from 1992 to 2020

Ice losses from the Greenland and Antarctic ice sheets have accelerated since the 1990s, accounting for a significant increase in the global mean sea level. Here, we present a new 29-year record of ice sheet mass balance from 1992 to 2020 from the Ice Sheet Mass Balance Inter-comparison Exercise (IM...

Full description

Bibliographic Details
Main Authors: Otosaka, IN, Shepherd, A, Ivins, ER, Schlegel, NJ, Amory, C, Van Den Broeke, MR, Horwath, M, Joughin, I, King, MD, Krinner, G, Nowicki, S, Payne, AJ, Rignot, E, Scambos, T, Simon, KM, Smith, BE, Sørensen, LS, Velicogna, I, Whitehouse, PL, Geruo, A, Agosta, C, Ahlstrøm, AP, Blazquez, A, Colgan, W, Engdahl, ME, Fettweis, X, Forsberg, R, Gallée, H, Gardner, A, Gilbert, L, Gourmelen, N, Groh, A, Gunter, BC, Harig, C, Helm, V, Khan, SA, Kittel, C, Konrad, H, Langen, PL, Lecavalier, BS, Liang, CC, Loomis, BD, McMillan, M, Melini, D, Mernild, SH, Mottram, R, Mouginot, J, Nilsson, J, Noël, B, Pattle, ME, Peltier, WR, Pie, N, Roca, M, Sasgen, I, Save, HV, Seo, KW, Scheuchl, B, Schrama, EJO, Schröder, L, Simonsen, SB, Slater, T, Spada, G, Sutterley, TC, Vishwakarma, BD, Van Wessem, JM, Wiese, D, Van Der Wal, W, Wouters, B
Format: Article in Journal/Newspaper
Language:English
Published: Copernicus GmbH 2023
Subjects:
Online Access:https://discovery.ucl.ac.uk/id/eprint/10170525/1/Gilbert_Mass%20balance%20of%20the%20Greenland%20and%20Antarctic%20ice%20sheets%20from%201992%20to%202020_VoR.pdf
https://discovery.ucl.ac.uk/id/eprint/10170525/
id ftucl:oai:eprints.ucl.ac.uk.OAI2:10170525
record_format openpolar
spelling ftucl:oai:eprints.ucl.ac.uk.OAI2:10170525 2023-12-24T10:11:30+01:00 Mass balance of the Greenland and Antarctic ice sheets from 1992 to 2020 Otosaka, IN Shepherd, A Ivins, ER Schlegel, NJ Amory, C Van Den Broeke, MR Horwath, M Joughin, I King, MD Krinner, G Nowicki, S Payne, AJ Rignot, E Scambos, T Simon, KM Smith, BE Sørensen, LS Velicogna, I Whitehouse, PL Geruo, A Agosta, C Ahlstrøm, AP Blazquez, A Colgan, W Engdahl, ME Fettweis, X Forsberg, R Gallée, H Gardner, A Gilbert, L Gourmelen, N Groh, A Gunter, BC Harig, C Helm, V Khan, SA Kittel, C Konrad, H Langen, PL Lecavalier, BS Liang, CC Loomis, BD McMillan, M Melini, D Mernild, SH Mottram, R Mouginot, J Nilsson, J Noël, B Pattle, ME Peltier, WR Pie, N Roca, M Sasgen, I Save, HV Seo, KW Scheuchl, B Schrama, EJO Schröder, L Simonsen, SB Slater, T Spada, G Sutterley, TC Vishwakarma, BD Van Wessem, JM Wiese, D Van Der Wal, W Wouters, B 2023-04-20 text https://discovery.ucl.ac.uk/id/eprint/10170525/1/Gilbert_Mass%20balance%20of%20the%20Greenland%20and%20Antarctic%20ice%20sheets%20from%201992%20to%202020_VoR.pdf https://discovery.ucl.ac.uk/id/eprint/10170525/ eng eng Copernicus GmbH https://discovery.ucl.ac.uk/id/eprint/10170525/1/Gilbert_Mass%20balance%20of%20the%20Greenland%20and%20Antarctic%20ice%20sheets%20from%201992%20to%202020_VoR.pdf https://discovery.ucl.ac.uk/id/eprint/10170525/ open Earth System Science Data , 15 (4) pp. 1597-1616. (2023) Article 2023 ftucl 2023-11-27T13:07:28Z Ice losses from the Greenland and Antarctic ice sheets have accelerated since the 1990s, accounting for a significant increase in the global mean sea level. Here, we present a new 29-year record of ice sheet mass balance from 1992 to 2020 from the Ice Sheet Mass Balance Inter-comparison Exercise (IMBIE). We compare and combine 50 independent estimates of ice sheet mass balance derived from satellite observations of temporal changes in ice sheet flow, in ice sheet volume, and in Earth's gravity field. Between 1992 and 2020, the ice sheets contributed 21.0±1.9g€¯mm to global mean sea level, with the rate of mass loss rising from 105g€¯Gtg€¯yr-1 between 1992 and 1996 to 372g€¯Gtg€¯yr-1 between 2016 and 2020. In Greenland, the rate of mass loss is 169±9g€¯Gtg€¯yr-1 between 1992 and 2020, but there are large inter-annual variations in mass balance, with mass loss ranging from 86g€¯Gtg€¯yr-1 in 2017 to 444g€¯Gtg€¯yr-1 in 2019 due to large variability in surface mass balance. In Antarctica, ice losses continue to be dominated by mass loss from West Antarctica (82±9g€¯Gtg€¯yr-1) and, to a lesser extent, from the Antarctic Peninsula (13±5g€¯Gtg€¯yr-1). East Antarctica remains close to a state of balance, with a small gain of 3±15g€¯Gtg€¯yr-1, but is the most uncertain component of Antarctica's mass balance. The dataset is publicly available at 10.5285/77B64C55-7166-4A06-9DEF-2E400398E452 (IMBIE Team, 2021). Article in Journal/Newspaper Antarc* Antarctic Antarctic Peninsula Antarctica East Antarctica Greenland Ice Sheet West Antarctica University College London: UCL Discovery Antarctic The Antarctic Antarctic Peninsula East Antarctica West Antarctica Greenland
institution Open Polar
collection University College London: UCL Discovery
op_collection_id ftucl
language English
description Ice losses from the Greenland and Antarctic ice sheets have accelerated since the 1990s, accounting for a significant increase in the global mean sea level. Here, we present a new 29-year record of ice sheet mass balance from 1992 to 2020 from the Ice Sheet Mass Balance Inter-comparison Exercise (IMBIE). We compare and combine 50 independent estimates of ice sheet mass balance derived from satellite observations of temporal changes in ice sheet flow, in ice sheet volume, and in Earth's gravity field. Between 1992 and 2020, the ice sheets contributed 21.0±1.9g€¯mm to global mean sea level, with the rate of mass loss rising from 105g€¯Gtg€¯yr-1 between 1992 and 1996 to 372g€¯Gtg€¯yr-1 between 2016 and 2020. In Greenland, the rate of mass loss is 169±9g€¯Gtg€¯yr-1 between 1992 and 2020, but there are large inter-annual variations in mass balance, with mass loss ranging from 86g€¯Gtg€¯yr-1 in 2017 to 444g€¯Gtg€¯yr-1 in 2019 due to large variability in surface mass balance. In Antarctica, ice losses continue to be dominated by mass loss from West Antarctica (82±9g€¯Gtg€¯yr-1) and, to a lesser extent, from the Antarctic Peninsula (13±5g€¯Gtg€¯yr-1). East Antarctica remains close to a state of balance, with a small gain of 3±15g€¯Gtg€¯yr-1, but is the most uncertain component of Antarctica's mass balance. The dataset is publicly available at 10.5285/77B64C55-7166-4A06-9DEF-2E400398E452 (IMBIE Team, 2021).
format Article in Journal/Newspaper
author Otosaka, IN
Shepherd, A
Ivins, ER
Schlegel, NJ
Amory, C
Van Den Broeke, MR
Horwath, M
Joughin, I
King, MD
Krinner, G
Nowicki, S
Payne, AJ
Rignot, E
Scambos, T
Simon, KM
Smith, BE
Sørensen, LS
Velicogna, I
Whitehouse, PL
Geruo, A
Agosta, C
Ahlstrøm, AP
Blazquez, A
Colgan, W
Engdahl, ME
Fettweis, X
Forsberg, R
Gallée, H
Gardner, A
Gilbert, L
Gourmelen, N
Groh, A
Gunter, BC
Harig, C
Helm, V
Khan, SA
Kittel, C
Konrad, H
Langen, PL
Lecavalier, BS
Liang, CC
Loomis, BD
McMillan, M
Melini, D
Mernild, SH
Mottram, R
Mouginot, J
Nilsson, J
Noël, B
Pattle, ME
Peltier, WR
Pie, N
Roca, M
Sasgen, I
Save, HV
Seo, KW
Scheuchl, B
Schrama, EJO
Schröder, L
Simonsen, SB
Slater, T
Spada, G
Sutterley, TC
Vishwakarma, BD
Van Wessem, JM
Wiese, D
Van Der Wal, W
Wouters, B
spellingShingle Otosaka, IN
Shepherd, A
Ivins, ER
Schlegel, NJ
Amory, C
Van Den Broeke, MR
Horwath, M
Joughin, I
King, MD
Krinner, G
Nowicki, S
Payne, AJ
Rignot, E
Scambos, T
Simon, KM
Smith, BE
Sørensen, LS
Velicogna, I
Whitehouse, PL
Geruo, A
Agosta, C
Ahlstrøm, AP
Blazquez, A
Colgan, W
Engdahl, ME
Fettweis, X
Forsberg, R
Gallée, H
Gardner, A
Gilbert, L
Gourmelen, N
Groh, A
Gunter, BC
Harig, C
Helm, V
Khan, SA
Kittel, C
Konrad, H
Langen, PL
Lecavalier, BS
Liang, CC
Loomis, BD
McMillan, M
Melini, D
Mernild, SH
Mottram, R
Mouginot, J
Nilsson, J
Noël, B
Pattle, ME
Peltier, WR
Pie, N
Roca, M
Sasgen, I
Save, HV
Seo, KW
Scheuchl, B
Schrama, EJO
Schröder, L
Simonsen, SB
Slater, T
Spada, G
Sutterley, TC
Vishwakarma, BD
Van Wessem, JM
Wiese, D
Van Der Wal, W
Wouters, B
Mass balance of the Greenland and Antarctic ice sheets from 1992 to 2020
author_facet Otosaka, IN
Shepherd, A
Ivins, ER
Schlegel, NJ
Amory, C
Van Den Broeke, MR
Horwath, M
Joughin, I
King, MD
Krinner, G
Nowicki, S
Payne, AJ
Rignot, E
Scambos, T
Simon, KM
Smith, BE
Sørensen, LS
Velicogna, I
Whitehouse, PL
Geruo, A
Agosta, C
Ahlstrøm, AP
Blazquez, A
Colgan, W
Engdahl, ME
Fettweis, X
Forsberg, R
Gallée, H
Gardner, A
Gilbert, L
Gourmelen, N
Groh, A
Gunter, BC
Harig, C
Helm, V
Khan, SA
Kittel, C
Konrad, H
Langen, PL
Lecavalier, BS
Liang, CC
Loomis, BD
McMillan, M
Melini, D
Mernild, SH
Mottram, R
Mouginot, J
Nilsson, J
Noël, B
Pattle, ME
Peltier, WR
Pie, N
Roca, M
Sasgen, I
Save, HV
Seo, KW
Scheuchl, B
Schrama, EJO
Schröder, L
Simonsen, SB
Slater, T
Spada, G
Sutterley, TC
Vishwakarma, BD
Van Wessem, JM
Wiese, D
Van Der Wal, W
Wouters, B
author_sort Otosaka, IN
title Mass balance of the Greenland and Antarctic ice sheets from 1992 to 2020
title_short Mass balance of the Greenland and Antarctic ice sheets from 1992 to 2020
title_full Mass balance of the Greenland and Antarctic ice sheets from 1992 to 2020
title_fullStr Mass balance of the Greenland and Antarctic ice sheets from 1992 to 2020
title_full_unstemmed Mass balance of the Greenland and Antarctic ice sheets from 1992 to 2020
title_sort mass balance of the greenland and antarctic ice sheets from 1992 to 2020
publisher Copernicus GmbH
publishDate 2023
url https://discovery.ucl.ac.uk/id/eprint/10170525/1/Gilbert_Mass%20balance%20of%20the%20Greenland%20and%20Antarctic%20ice%20sheets%20from%201992%20to%202020_VoR.pdf
https://discovery.ucl.ac.uk/id/eprint/10170525/
geographic Antarctic
The Antarctic
Antarctic Peninsula
East Antarctica
West Antarctica
Greenland
geographic_facet Antarctic
The Antarctic
Antarctic Peninsula
East Antarctica
West Antarctica
Greenland
genre Antarc*
Antarctic
Antarctic Peninsula
Antarctica
East Antarctica
Greenland
Ice Sheet
West Antarctica
genre_facet Antarc*
Antarctic
Antarctic Peninsula
Antarctica
East Antarctica
Greenland
Ice Sheet
West Antarctica
op_source Earth System Science Data , 15 (4) pp. 1597-1616. (2023)
op_relation https://discovery.ucl.ac.uk/id/eprint/10170525/1/Gilbert_Mass%20balance%20of%20the%20Greenland%20and%20Antarctic%20ice%20sheets%20from%201992%20to%202020_VoR.pdf
https://discovery.ucl.ac.uk/id/eprint/10170525/
op_rights open
_version_ 1786166108908158976