Time series of autonomous phase-sensitive radar (ApRES) measurements and determined basal melt rates at location EIS8 on Ekström Ice Shelf, Antarctica from April 2020 to January 2021

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Hauptverfasser: Zeising, Ole, Steinhage, Daniel, Berger, Sophie, Drews, Reinhard, Ershadi, M Reza, Fromm, Tanja, Hattermann, Tore, Pattyn, Frank, Eisen, Olaf
Format: Dataset Open Access
Sprache:en
Veröffentlicht: PANGAEA 2025
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author Zeising, Ole
Steinhage, Daniel
Berger, Sophie
Drews, Reinhard
Ershadi, M Reza
Fromm, Tanja
Hattermann, Tore
Pattyn, Frank
Eisen, Olaf
author_facet Zeising, Ole
Steinhage, Daniel
Berger, Sophie
Drews, Reinhard
Ershadi, M Reza
Fromm, Tanja
Hattermann, Tore
Pattyn, Frank
Eisen, Olaf
collection Datos científicos de ciencias marinas y ambientales
contents The dataset consists of raw data and derived melt rates from autonomous phase-sensitive radar (ApRES) measurements. The ApRES was operated with two broadband frame antennas at the Ekström Ice Shelf since April 2020 with one measurement every hour. These Lagrangian measurements allow the estimation of basal melt rates based on estimated vertical displacements of englacial and basal reflections. The ApRES is an autonomous operating frequency-modulated continuous wave (FMCW) radar that transmits a tone sweep - called chirp - ranging from 200 to 400 MHz over a period of one second. In order to improve the signal-to-noise ratio, 20 chirps were transmitted within a single measurement. These measurements were repeated every hour. A raw data file contains up to 4 measurements. Background of the pRES-system is published by Nicholls et al. (2015). The processing of the data is described in Zeising et al. (2025). The estimated basal melt rates are based on the analysis of firn densification, strain thinning, and the change in ice thickness from the determination of vertical displacements. The basal melt rates are averaged over 7 days (moving window). To represent the variability of the melt rate on sub-weekly timescales, we also calculated the 7 day standard deviation of the basal melt rates based on a 1 day moving window. The uncertainty of the basal melt rate is based on the uncertainty of the strain estimation and the determination of the ice thickness change. Data are exported in 4 hour intervals. A positive melt rate represents melting. Details on the processing are given in Zeising et al. (2025).
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_972012
institution PANGAEA
language en
publishDate 2025
publisher PANGAEA
record_format pangaea
spellingShingle Time series of autonomous phase-sensitive radar (ApRES) measurements and determined basal melt rates at location EIS8 on Ekström Ice Shelf, Antarctica from April 2020 to January 2021
Zeising, Ole
Steinhage, Daniel
Berger, Sophie
Drews, Reinhard
Ershadi, M Reza
Fromm, Tanja
Hattermann, Tore
Pattyn, Frank
Eisen, Olaf
Antarctica; ApRES; Basal melt rates; Ekström; ice shelf basal melting
The dataset consists of raw data and derived melt rates from autonomous phase-sensitive radar (ApRES) measurements. The ApRES was operated with two broadband frame antennas at the Ekström Ice Shelf since April 2020 with one measurement every hour. These Lagrangian measurements allow the estimation of basal melt rates based on estimated vertical displacements of englacial and basal reflections. The ApRES is an autonomous operating frequency-modulated continuous wave (FMCW) radar that transmits a tone sweep - called chirp - ranging from 200 to 400 MHz over a period of one second. In order to improve the signal-to-noise ratio, 20 chirps were transmitted within a single measurement. These measurements were repeated every hour. A raw data file contains up to 4 measurements. Background of the pRES-system is published by Nicholls et al. (2015). The processing of the data is described in Zeising et al. (2025). The estimated basal melt rates are based on the analysis of firn densification, strain thinning, and the change in ice thickness from the determination of vertical displacements. The basal melt rates are averaged over 7 days (moving window). To represent the variability of the melt rate on sub-weekly timescales, we also calculated the 7 day standard deviation of the basal melt rates based on a 1 day moving window. The uncertainty of the basal melt rate is based on the uncertainty of the strain estimation and the determination of the ice thickness change. Data are exported in 4 hour intervals. A positive melt rate represents melting. Details on the processing are given in Zeising et al. (2025).
title Time series of autonomous phase-sensitive radar (ApRES) measurements and determined basal melt rates at location EIS8 on Ekström Ice Shelf, Antarctica from April 2020 to January 2021
topic Antarctica; ApRES; Basal melt rates; Ekström; ice shelf basal melting
url https://doi.org/10.1594/PANGAEA.972012