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Progress toward globally complete frontal ablation estimates of marine-terminating glaciers.

Authors :
Kochtitzky, William
Copland, Luke
Van Wychen, Wesley
Hock, Regine
Rounce, David R.
Jiskoot, Hester
Scambos, Ted A.
Morlighem, Mathieu
King, Michalea
Cha, Leo
Gould, Luke
Merrill, Paige-Marie
Glazovsky, Andrey
Hugonnet, Romain
Strozzi, Tazio
Noël, Brice
Navarro, Francisco
Millan, Romain
Dowdeswell, Julian A.
Cook, Alison
Source :
Annals of Glaciology; Sep2023, Vol. 63 Issue 87/89, p143-152, 10p
Publication Year :
2023

Abstract

Knowledge of frontal ablation from marine-terminating glaciers (i.e., mass lost at the calving face) is critical for constraining glacier mass balance, improving projections of mass change, and identifying the processes that govern frontal mass loss. Here, we discuss the challenges involved in computing frontal ablation and the unique issues pertaining to both glaciers and ice sheets. Frontal ablation estimates require numerous datasets, including glacier terminus area change, thickness, surface velocity, density, and climatic mass balance. Observations and models of these variables have improved over the past decade, but significant gaps and regional discrepancies remain, and better quantification of temporal variability in frontal ablation is needed. Despite major advances in satellite-derived large-scale datasets, large uncertainties remain with respect to ice thickness, depth-averaged velocities, and the bulk density of glacier ice close to calving termini or grounding lines. We suggest ways in which we can move toward globally complete frontal ablation estimates, highlighting areas where we need improved datasets and increased collaboration. [ABSTRACT FROM AUTHOR]

Subjects

Subjects :
GLACIERS
ICE calving
ICE sheets

Details

Language :
English
ISSN :
02603055
Volume :
63
Issue :
87/89
Database :
Complementary Index
Journal :
Annals of Glaciology
Publication Type :
Academic Journal
Accession number :
172989988
Full Text :
https://doi.org/10.1017/aog.2023.35