Long –term monitoring of the glaciers in Wordie Bay, Antarctic Peninsula, using multi-mission SAR time series

The Antarctic Peninsula is one of the world`s most affected regions by Climate Change. Dense and long time series of multi-mission SAR data enable detailed studies of the rapid glaciological changes in this area. We present first results of a case study at the former Wordie Ice Shelf, located at the...

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Main Authors: Friedl, Peter, Seehaus, Thorsten, Wendt, Anja, Braun, Matthias
Format: Conference Object
Language:German
Published: 2016
Subjects:
Online Access:https://elib.dlr.de/107549/
https://elib.dlr.de/107549/1/Poster_TSX_Science_2016_Friedl_et_al.pdf
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author Friedl, Peter
Seehaus, Thorsten
Wendt, Anja
Braun, Matthias
author_facet Friedl, Peter
Seehaus, Thorsten
Wendt, Anja
Braun, Matthias
author_sort Friedl, Peter
collection Unknown
description The Antarctic Peninsula is one of the world`s most affected regions by Climate Change. Dense and long time series of multi-mission SAR data enable detailed studies of the rapid glaciological changes in this area. We present first results of a case study at the former Wordie Ice Shelf, located at the south-western side of the Antarctic Peninsula. Since the ice shelf disintegrated in a series of events during the 1980s, only disconnected and retreating tidewater glaciers have remained. Due to the loss of the buttressing force of the ice shelf, the former tributary glaciers reacted with an acceleration of their flow speeds in order to adapt to the new boundary conditions. While the loss of the ice shelf itself does not affect sea level, the increased outflow of the glaciers and the associated mass loss contribute to global sea level rise. Most of the studies conducted at Wordie Bay so far covered only relatively short investigation periods and compared their results on a bi-temporal basis. Hence it is yet neither well known how long this process of adaption to the new boundary conditions exactly lasts nor how much ice mass loss and sea level rise is caused by this process in total. We provide completest possible time series of glaciological parameters (e.g. glacier extends, grounding line positions, flow speeds, glacier mass flow, glacier elevation/volume changes and contributions to global sea level rise) for the glaciers in Wordie Bay, ranging from the mid-1990s to today. The glaciological parameters are determined by applying intensity tracking as well as differential interferometric synthetic radar (DInSAR) methods and differential range offset tracking. For this purpose large datasets of previously active (e.g. ERS, Envisat-ASAR, RADARSAT-1, ALOS PALSAR) as well as currently recording SAR sensors (e.g. Sentinel-1, TerraSAR-X, TanDEM-X) are processed together with data from laser/radar altimetry and ground penetrating radar. The usage of long-term series of SAR data allows us to obtain more precise series of ...
format Conference Object
genre Antarc*
Antarctic
Antarctic Peninsula
Ice Shelf
Tidewater
Wordie Bay
Wordie Ice Shelf
genre_facet Antarc*
Antarctic
Antarctic Peninsula
Ice Shelf
Tidewater
Wordie Bay
Wordie Ice Shelf
geographic Antarctic
The Antarctic
Antarctic Peninsula
Asar
Wordie
Wordie Ice Shelf
Wordie Bay
geographic_facet Antarctic
The Antarctic
Antarctic Peninsula
Asar
Wordie
Wordie Ice Shelf
Wordie Bay
id ftdlr:oai:elib.dlr.de:107549
institution Open Polar
language German
long_lat ENVELOPE(134.033,134.033,68.667,68.667)
ENVELOPE(-67.500,-67.500,-69.167,-69.167)
ENVELOPE(-67.750,-67.750,-69.250,-69.250)
ENVELOPE(-67.750,-67.750,-69.116,-69.116)
op_collection_id ftdlr
op_relation https://elib.dlr.de/107549/1/Poster_TSX_Science_2016_Friedl_et_al.pdf
Friedl, Peter und Seehaus, Thorsten und Wendt, Anja und Braun, Matthias (2016) Long –term monitoring of the glaciers in Wordie Bay, Antarctic Peninsula, using multi-mission SAR time series. TerraSAR-X/TanDEM-X Science Team Meeting 2016, 2016-10-17 - 2016-10-20, Oberpfaffenhofen.
publishDate 2016
record_format openpolar
spelling ftdlr:oai:elib.dlr.de:107549 2025-06-15T14:09:06+00:00 Long –term monitoring of the glaciers in Wordie Bay, Antarctic Peninsula, using multi-mission SAR time series Friedl, Peter Seehaus, Thorsten Wendt, Anja Braun, Matthias 2016-10 application/pdf https://elib.dlr.de/107549/ https://elib.dlr.de/107549/1/Poster_TSX_Science_2016_Friedl_et_al.pdf de ger https://elib.dlr.de/107549/1/Poster_TSX_Science_2016_Friedl_et_al.pdf Friedl, Peter und Seehaus, Thorsten und Wendt, Anja und Braun, Matthias (2016) Long –term monitoring of the glaciers in Wordie Bay, Antarctic Peninsula, using multi-mission SAR time series. TerraSAR-X/TanDEM-X Science Team Meeting 2016, 2016-10-17 - 2016-10-20, Oberpfaffenhofen. Internationales Bodensegment Konferenzbeitrag NonPeerReviewed 2016 ftdlr 2025-06-04T04:58:04Z The Antarctic Peninsula is one of the world`s most affected regions by Climate Change. Dense and long time series of multi-mission SAR data enable detailed studies of the rapid glaciological changes in this area. We present first results of a case study at the former Wordie Ice Shelf, located at the south-western side of the Antarctic Peninsula. Since the ice shelf disintegrated in a series of events during the 1980s, only disconnected and retreating tidewater glaciers have remained. Due to the loss of the buttressing force of the ice shelf, the former tributary glaciers reacted with an acceleration of their flow speeds in order to adapt to the new boundary conditions. While the loss of the ice shelf itself does not affect sea level, the increased outflow of the glaciers and the associated mass loss contribute to global sea level rise. Most of the studies conducted at Wordie Bay so far covered only relatively short investigation periods and compared their results on a bi-temporal basis. Hence it is yet neither well known how long this process of adaption to the new boundary conditions exactly lasts nor how much ice mass loss and sea level rise is caused by this process in total. We provide completest possible time series of glaciological parameters (e.g. glacier extends, grounding line positions, flow speeds, glacier mass flow, glacier elevation/volume changes and contributions to global sea level rise) for the glaciers in Wordie Bay, ranging from the mid-1990s to today. The glaciological parameters are determined by applying intensity tracking as well as differential interferometric synthetic radar (DInSAR) methods and differential range offset tracking. For this purpose large datasets of previously active (e.g. ERS, Envisat-ASAR, RADARSAT-1, ALOS PALSAR) as well as currently recording SAR sensors (e.g. Sentinel-1, TerraSAR-X, TanDEM-X) are processed together with data from laser/radar altimetry and ground penetrating radar. The usage of long-term series of SAR data allows us to obtain more precise series of ... Conference Object Antarc* Antarctic Antarctic Peninsula Ice Shelf Tidewater Wordie Bay Wordie Ice Shelf Unknown Antarctic The Antarctic Antarctic Peninsula Asar ENVELOPE(134.033,134.033,68.667,68.667) Wordie ENVELOPE(-67.500,-67.500,-69.167,-69.167) Wordie Ice Shelf ENVELOPE(-67.750,-67.750,-69.250,-69.250) Wordie Bay ENVELOPE(-67.750,-67.750,-69.116,-69.116)
spellingShingle Internationales Bodensegment
Friedl, Peter
Seehaus, Thorsten
Wendt, Anja
Braun, Matthias
Long –term monitoring of the glaciers in Wordie Bay, Antarctic Peninsula, using multi-mission SAR time series
title Long –term monitoring of the glaciers in Wordie Bay, Antarctic Peninsula, using multi-mission SAR time series
title_full Long –term monitoring of the glaciers in Wordie Bay, Antarctic Peninsula, using multi-mission SAR time series
title_fullStr Long –term monitoring of the glaciers in Wordie Bay, Antarctic Peninsula, using multi-mission SAR time series
title_full_unstemmed Long –term monitoring of the glaciers in Wordie Bay, Antarctic Peninsula, using multi-mission SAR time series
title_short Long –term monitoring of the glaciers in Wordie Bay, Antarctic Peninsula, using multi-mission SAR time series
title_sort long –term monitoring of the glaciers in wordie bay, antarctic peninsula, using multi-mission sar time series
topic Internationales Bodensegment
topic_facet Internationales Bodensegment
url https://elib.dlr.de/107549/
https://elib.dlr.de/107549/1/Poster_TSX_Science_2016_Friedl_et_al.pdf