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Reconstruction of Historical Surface Mass Balance, 1984–2017 from GreenTrACS Multi-offset Ground-penetrating RadarWe present continuous estimates of snow and firn density, layer depth and accumulation from a multi-channel, multi-offset, ground-penetrating radar traverse. Our method uses the electromagnetic velocity, estimated from waveform travel-times measured at common-midpoints between sources and receivers. Previously, common-midpoint radar experiments on ice sheets have been limited to point observations. We completed radar velocity analysis in the upper ~2 m to estimate the surface and average snow density of the Greenland Ice Sheet. We parameterized the Herron and Langway (1980) firn density and age model using the radar-derived snow density, radar-derived surface mass balance (2015–2017) and reanalysis-derived temperature data. We applied structure-oriented filtering to the radar image along constant age horizons and increased the depth at which horizons could be reliably interpreted. We reconstructed the historical instantaneous surface mass balance, which we averaged into annual and multidecadal products along a 78 km traverse for the period 1984–2017. We found good agreement between our physically constrained parameterization and a firn core collected from the dry snow accumulation zone, and gained insights into the spatial correlation of surface snow density.
Document ID
20210025658
Acquisition Source
Goddard Space Flight Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
Tate G Meehan ORCID
(Boise State University Boise, Idaho, United States)
H P Marshall ORCID
(Boise State University Boise, Idaho, United States)
John H Bradford
(Colorado School of Mines Golden, Colorado, United States)
Robert L Hawley ORCID
(Dartmouth College Hanover, New Hampshire, United States)
Thomas B Overly ORCID
(University of Maryland, College Park College Park, Maryland, United States)
Gabriel Lewis ORCID
(Dartmouth College Hanover, New Hampshire, United States)
Karina Graeter ORCID
(Dartmouth College Hanover, New Hampshire, United States)
Erich Osterberg ORCID
(Dartmouth College Hanover, New Hampshire, United States)
Forrest McCarthy ORCID
(Dartmouth College Hanover, New Hampshire, United States)
Date Acquired
December 8, 2021
Publication Date
December 14, 2020
Publication Information
Publication: Journal of Glaciology
Publisher: Cambridge University Press
Volume: 67
Issue: 262
Issue Publication Date: April 1, 2021
ISSN: 0022-1430
e-ISSN: 1727-5652
Subject Category
Geosciences (General)
Funding Number(s)
OTHER: National Science Foundation Office of Polar Programs
CONTRACT_GRANT: SPEC5722
CONTRACT_GRANT: NNX17AE79A
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
External Peer Committee
Keywords
glacier geophysics
ground-penetrating radar
polar firn
surface mass budget
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