Determining the geodetic mass balance of the Znosko glacier (King George Island, Antarctica) using an unmanned aerial vehicle
- Cinthya Bello(corresponding author),
- Wilson Suarez,
- Fabian Brondi
- Universidad Nacional Agraria La Molina,
- Ministry of Foreign Affairs of Peru,
- National Service of Meteorology and Hydrology of Peru,
- Mother Earth Data Sharing
Open access
Publication Information
Output type
Original language
EnglishPages from-to (Number of pages)
Pages 148-156 (9 pages)Journal (Volume, Issue Number)
Remote Sensing Letters (Volume 14, Issue 2)Publication milestones
- Published - 2023
Publication status
ISSN
2150-704XPublication IDs
- Scopus: 85146117816
Abstract
In the last decade, unmanned aerial vehicles (UAVs) have been used for scientific research specially for glaciological applications in Antarctica. In the study an UAV was used to detect changes in Znosko glacier surface, map the glacier contour, snow line and estimate the geodetic mass balance. Znosko glacier (ZG) located in King George Island (KGI), Antarctic Peninsula has an estimated total area of 1.77 km2 (January 2020), a length of 1.9 km and maximum elevation of 300 metres above sea level (m a.s.l.). The aerial photogrammetric survey was carried out in two field campaigns (austral summer 2019 and 2020) during the XXVI and XXVII Peruvian Antarctic Operation using a Quadcopter for image acquisition. Our findings reveal a negative geodetic mass balance for the periods 2019–2012, 2020–2019 and 2020–2012 with −15.25, −2.76 and −17.97 metre water equivalent (m w.e.) respectively. Analysis of these datasets confirm a mass loss with a heterogeneous pattern between accumulation and ablation zone. Furthermore, glacier outlines reveal that ZG front has lost approximately 3% of its area between 2012 and 2020 by calving effect.
