Glacier change and glacial lake outburst flood risk in the Bolivian Andes
Glaciers of the Bolivian Andes represent an important water resource for Andean cities and mountain communities, yet relatively little work has assessed changes in their extent over recent decades. In many mountain regions, glacier recession has been accompanied by the development of proglacial lake...
Published in: | The Cryosphere |
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Main Authors: | , , , , |
Format: | Article in Journal/Newspaper |
Language: | English |
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Copernicus Publications
2016
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Online Access: | https://doi.org/10.5194/tc-10-2399-2016 https://noa.gwlb.de/receive/cop_mods_00011308 https://noa.gwlb.de/servlets/MCRFileNodeServlet/cop_derivate_00011265/tc-10-2399-2016.pdf https://tc.copernicus.org/articles/10/2399/2016/tc-10-2399-2016.pdf |
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author | Cook, Simon J. Kougkoulos, Ioannis Edwards, Laura A. Dortch, Jason Hoffmann, Dirk |
author_facet | Cook, Simon J. Kougkoulos, Ioannis Edwards, Laura A. Dortch, Jason Hoffmann, Dirk |
author_sort | Cook, Simon J. |
collection | Niedersächsisches Online-Archiv NOA |
container_issue | 5 |
container_start_page | 2399 |
container_title | The Cryosphere |
container_volume | 10 |
description | Glaciers of the Bolivian Andes represent an important water resource for Andean cities and mountain communities, yet relatively little work has assessed changes in their extent over recent decades. In many mountain regions, glacier recession has been accompanied by the development of proglacial lakes, which can pose a glacial lake outburst flood (GLOF) hazard. However, no studies have assessed the development of such lakes in Bolivia despite recent GLOF incidents here. Our mapping from satellite imagery reveals an overall areal shrinkage of 228.1 ± 22.8 km2 (43.1 %) across the Bolivian Cordillera Oriental between 1986 and 2014. Shrinkage was greatest in the Tres Cruces region (47.3 %), followed by the Cordillera Apolobamba (43.1 %) and Cordillera Real (41.9 %). A growing number of proglacial lakes have developed as glaciers have receded, in accordance with trends in most other deglaciating mountain ranges, although the number of ice-contact lakes has decreased. The reasons for this are unclear, but the pattern of lake change has varied significantly throughout the study period, suggesting that monitoring of future lake development is required as ice continues to recede. Ultimately, we use our 2014 database of proglacial lakes to assess GLOF risk across the Bolivian Andes. We identify 25 lakes that pose a potential GLOF threat to downstream communities and infrastructure. We suggest that further studies of potential GLOF impacts are urgently required. |
format | Article in Journal/Newspaper |
genre | The Cryosphere |
genre_facet | The Cryosphere |
geographic | Glacial Lake |
geographic_facet | Glacial Lake |
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institution | Open Polar |
language | English |
long_lat | ENVELOPE(-129.463,-129.463,58.259,58.259) |
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op_doi | https://doi.org/10.5194/tc-10-2399-2016 |
op_relation | The Cryosphere -- ˜Theœ Cryosphere -- http://www.bibliothek.uni-regensburg.de/ezeit/?2393169 -- http://www.the-cryosphere.net/ -- 1994-0424 https://doi.org/10.5194/tc-10-2399-2016 https://noa.gwlb.de/receive/cop_mods_00011308 https://noa.gwlb.de/servlets/MCRFileNodeServlet/cop_derivate_00011265/tc-10-2399-2016.pdf https://tc.copernicus.org/articles/10/2399/2016/tc-10-2399-2016.pdf |
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publishDate | 2016 |
publisher | Copernicus Publications |
record_format | openpolar |
spelling | ftnonlinearchiv:oai:noa.gwlb.de:cop_mods_00011308 2025-01-17T01:06:06+00:00 Glacier change and glacial lake outburst flood risk in the Bolivian Andes Cook, Simon J. Kougkoulos, Ioannis Edwards, Laura A. Dortch, Jason Hoffmann, Dirk 2016-10 electronic https://doi.org/10.5194/tc-10-2399-2016 https://noa.gwlb.de/receive/cop_mods_00011308 https://noa.gwlb.de/servlets/MCRFileNodeServlet/cop_derivate_00011265/tc-10-2399-2016.pdf https://tc.copernicus.org/articles/10/2399/2016/tc-10-2399-2016.pdf eng eng Copernicus Publications The Cryosphere -- ˜Theœ Cryosphere -- http://www.bibliothek.uni-regensburg.de/ezeit/?2393169 -- http://www.the-cryosphere.net/ -- 1994-0424 https://doi.org/10.5194/tc-10-2399-2016 https://noa.gwlb.de/receive/cop_mods_00011308 https://noa.gwlb.de/servlets/MCRFileNodeServlet/cop_derivate_00011265/tc-10-2399-2016.pdf https://tc.copernicus.org/articles/10/2399/2016/tc-10-2399-2016.pdf uneingeschränkt info:eu-repo/semantics/openAccess article Verlagsveröffentlichung article Text doc-type:article 2016 ftnonlinearchiv https://doi.org/10.5194/tc-10-2399-2016 2022-02-08T22:56:34Z Glaciers of the Bolivian Andes represent an important water resource for Andean cities and mountain communities, yet relatively little work has assessed changes in their extent over recent decades. In many mountain regions, glacier recession has been accompanied by the development of proglacial lakes, which can pose a glacial lake outburst flood (GLOF) hazard. However, no studies have assessed the development of such lakes in Bolivia despite recent GLOF incidents here. Our mapping from satellite imagery reveals an overall areal shrinkage of 228.1 ± 22.8 km2 (43.1 %) across the Bolivian Cordillera Oriental between 1986 and 2014. Shrinkage was greatest in the Tres Cruces region (47.3 %), followed by the Cordillera Apolobamba (43.1 %) and Cordillera Real (41.9 %). A growing number of proglacial lakes have developed as glaciers have receded, in accordance with trends in most other deglaciating mountain ranges, although the number of ice-contact lakes has decreased. The reasons for this are unclear, but the pattern of lake change has varied significantly throughout the study period, suggesting that monitoring of future lake development is required as ice continues to recede. Ultimately, we use our 2014 database of proglacial lakes to assess GLOF risk across the Bolivian Andes. We identify 25 lakes that pose a potential GLOF threat to downstream communities and infrastructure. We suggest that further studies of potential GLOF impacts are urgently required. Article in Journal/Newspaper The Cryosphere Niedersächsisches Online-Archiv NOA Glacial Lake ENVELOPE(-129.463,-129.463,58.259,58.259) The Cryosphere 10 5 2399 2413 |
spellingShingle | article Verlagsveröffentlichung Cook, Simon J. Kougkoulos, Ioannis Edwards, Laura A. Dortch, Jason Hoffmann, Dirk Glacier change and glacial lake outburst flood risk in the Bolivian Andes |
title | Glacier change and glacial lake outburst flood risk in the Bolivian Andes |
title_full | Glacier change and glacial lake outburst flood risk in the Bolivian Andes |
title_fullStr | Glacier change and glacial lake outburst flood risk in the Bolivian Andes |
title_full_unstemmed | Glacier change and glacial lake outburst flood risk in the Bolivian Andes |
title_short | Glacier change and glacial lake outburst flood risk in the Bolivian Andes |
title_sort | glacier change and glacial lake outburst flood risk in the bolivian andes |
topic | article Verlagsveröffentlichung |
topic_facet | article Verlagsveröffentlichung |
url | https://doi.org/10.5194/tc-10-2399-2016 https://noa.gwlb.de/receive/cop_mods_00011308 https://noa.gwlb.de/servlets/MCRFileNodeServlet/cop_derivate_00011265/tc-10-2399-2016.pdf https://tc.copernicus.org/articles/10/2399/2016/tc-10-2399-2016.pdf |