Westwards component of ice surface velocity on the Greenland Ice Sheet measured in spring/summer 2012

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Main Authors: Chandler, David M, Wadham, Jemma, Nienow, Peter, Doyle, Samuel H, Tedstone, Andrew, Telling, Jon, Hawkings, Jonathan, Alcock, Jonathan, Linhoff, Benjamin, Hubbard, Alun L
Format: Dataset Open Access
Language:en
Published: PANGAEA 2021
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author Chandler, David M
Wadham, Jemma
Nienow, Peter
Doyle, Samuel H
Tedstone, Andrew
Telling, Jon
Hawkings, Jonathan
Alcock, Jonathan
Linhoff, Benjamin
Hubbard, Alun L
author_facet Chandler, David M
Wadham, Jemma
Nienow, Peter
Doyle, Samuel H
Tedstone, Andrew
Telling, Jon
Hawkings, Jonathan
Alcock, Jonathan
Linhoff, Benjamin
Hubbard, Alun L
collection Datos científicos de ciencias marinas y ambientales
contents Ice surface motion was recorded by five dual-frequency Leica SR520 GPS receivers deployed on poles drilled 2 m into the ice surface, within 700 m of Moulin L41A at 66.97N -49.27E. GPS data were post-processed kinematically (King, 2004, http://dx.doi.org/10.3189/172756504781829747) with Track v.1.27 software (Chen, 1998, Ph.D. thesis, Cambridge MA, USA) against bedrock-mounted reference stations using a precise ephemeris from the International GNSS Service )Dow et al., 2009, http://dx.doi.org/10.1007/s00190-008-0300-3). Reference stations were located 1 km from the terminus of Russell Glacier and at Kellyville, giving baseline lengths less than 41 km. Due to gaps in the time series caused by power outage, we averaged the horizontal velocities recorded at the five stations with the fewest gaps to give a single record. Positions were recorded at 30 s intervals; 1-hr means were then smoothed using a 5-point binomial filter. Since there was generally little difference in velocity between the stakes, the mean velocity across the network gives a better indication of the seasonal pattern of ice motion with fewer gaps than in the individual records. Velocities are centred differences of hourly displacements. GPS stakes required periodic re-drilling as they gradually melted out.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_926843
institution PANGAEA
language en
publishDate 2021
publisher PANGAEA
record_format pangaea
spellingShingle Westwards component of ice surface velocity on the Greenland Ice Sheet measured in spring/summer 2012
Chandler, David M
Wadham, Jemma
Nienow, Peter
Doyle, Samuel H
Tedstone, Andrew
Telling, Jon
Hawkings, Jonathan
Alcock, Jonathan
Linhoff, Benjamin
Hubbard, Alun L
DATE/TIME; GPS receiver (Leica SR520); Greenland; Greenland ice sheet; hydrology; ICEOBS; Ice observation; Ice Sheet; Ice surface velocity; moulin; Moulin_L41A; subglacial; tracing
Ice surface motion was recorded by five dual-frequency Leica SR520 GPS receivers deployed on poles drilled 2 m into the ice surface, within 700 m of Moulin L41A at 66.97N -49.27E. GPS data were post-processed kinematically (King, 2004, http://dx.doi.org/10.3189/172756504781829747) with Track v.1.27 software (Chen, 1998, Ph.D. thesis, Cambridge MA, USA) against bedrock-mounted reference stations using a precise ephemeris from the International GNSS Service )Dow et al., 2009, http://dx.doi.org/10.1007/s00190-008-0300-3). Reference stations were located 1 km from the terminus of Russell Glacier and at Kellyville, giving baseline lengths less than 41 km. Due to gaps in the time series caused by power outage, we averaged the horizontal velocities recorded at the five stations with the fewest gaps to give a single record. Positions were recorded at 30 s intervals; 1-hr means were then smoothed using a 5-point binomial filter. Since there was generally little difference in velocity between the stakes, the mean velocity across the network gives a better indication of the seasonal pattern of ice motion with fewer gaps than in the individual records. Velocities are centred differences of hourly displacements. GPS stakes required periodic re-drilling as they gradually melted out.
title Westwards component of ice surface velocity on the Greenland Ice Sheet measured in spring/summer 2012
topic DATE/TIME; GPS receiver (Leica SR520); Greenland; Greenland ice sheet; hydrology; ICEOBS; Ice observation; Ice Sheet; Ice surface velocity; moulin; Moulin_L41A; subglacial; tracing
url https://doi.org/10.1594/PANGAEA.926843