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Detecting Seasonal Ice Dynamics in Satellite ImagesFully understanding how glaciers respond to environmental change will require new methods to help us identify the onset of ice acceleration events and observe how dynamic signals propagate within glaciers. In particular, observations of ice dynamics on seasonal timescales may offer insights into how a glacier interacts with various forcing mechanisms throughout the year. The task of generating continuous ice velocity time series that resolve seasonal variability is made more difficult by a spotty satellite record that contains no optical observations throughout the dark, polar winters. Furthermore, velocities obtained by feature tracking are marked by high noise when image pairs are separated by short time intervals and contain no direct insights into variability that occurs between images separated by long time intervals. In this paper, we describe a method of analyzing optical or SAR-derived feature-tracked velocities to characterize the magnitude and timing of seasonal ice dynamic variability. Our method is agnostic to data gaps and is able to recover climatological average winter velocities regardless of the availability of direct observations during winter. Using characteristic image acquisition times and error distributions from Antarctic image pairs in the ITS_LIVE dataset, we generate synthetic ice velocity time series, then apply our method to recover imposed magnitudes of seasonal variability within ±1.4 m yr−1. We then validate the techniques by comparing our results to GPS data collected on Russell Glacier in Greenland. The methods presented here may be applied to better understand how ice dynamic signals propagate on seasonal timescales, and what mechanisms control the flow of the world’s ice.
Document ID
20205001777
Acquisition Source
Goddard Space Flight Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
Chad A. Greene
(Jet Propulsion Lab La Cañada Flintridge, California, United States)
Alex S. Gardner
(Jet Propulsion Lab La Cañada Flintridge, California, United States)
Lauren C. Andrews
(Goddard Space Flight Center Greenbelt, Maryland, United States)
Date Acquired
May 5, 2020
Publication Date
December 2, 2020
Publication Information
Publication: Cryosphere
Publisher: European Geosciences Union
Volume: 14
Issue: 12
Issue Publication Date: December 2, 2020
ISSN: 1994-0416
e-ISSN: 1994-0424
Subject Category
Earth Resources And Remote Sensing
Funding Number(s)
WBS: 281945.02.53.04.11
CONTRACT_GRANT: 80NM0018D0004P00002
CONTRACT_GRANT: J-090016
Distribution Limits
Public
Copyright
Public Use Permitted.
Technical Review
External Peer Committee
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