Litcius/Paper detail

Recent mass-balance changes of Agua Negra glacier (30°S) in the Desert Andes of Argentina

Pierre Pitte, Mariano Masiokas, Hernán Gargantini, Lucas Ruiz, Étienne Berthier, L. Ferri, Laura Zalazar, Inés Dussaillant, Maximiliano Viale, Valentina Zorzut, Ernesto Corvalán, Juan Pablo Scarpa, Gustavo Costa, Ricardo Villalba

2022Journal of Glaciology14 citationsDOIOpen Access PDF

Abstract

Abstract The Desert Andes contain >4500 ice masses, but only a handful are currently being monitored. We present the mass changes of the small mountain glacier Agua Negra (1 km 2 ) and of the rest of glaciers in the Jáchal river basin. Remote-sensing data show Agua Negra glacier lost 23% of its area during 1959–2019. Glaciological measurements during 2014–2021 indicate an average annual mass balance of −0.52 m w.e. a −1 , with mean winter and summer balances of 0.80 and −1.33 m w.e. a −1 , respectively. The Equilibrium Line Altitude (ELA) is estimated to be 5100 ± 100 m a.s.l., which corresponds to an Accumulation Area Ratio (AAR) of 0.28 ± 0.21. Geodetic data from SRTM X and Pléiades show a doubling of the loss rate from −0.32 ± 0.03 m w.e. a −1 in 2000–2013, to −0.66 ± 0.06 m w.e. a −1 in 2013–2019. Comparatively, the ice losses for the entire Jáchal river basin (25 500 km 2 ) derived from ASTER show less negative values, −0.11 ± 16 m w.e. a −1 for 2000–2012 and −0.23 ± 14 m w.e. a −1 for 2012–2018. The regional warming trend since 1979 and a recent decline in snow accumulation are probably driving the observed glacier mass balance.

Topics & Concepts

GlacierGeologyGlacier mass balanceSnowShuttle Radar Topography MissionPhysical geographyStructural basinWater equivalentAltitude (triangle)Snow lineHydrology (agriculture)GeomorphologySnow coverGeographyDigital elevation modelGeotechnical engineeringMathematicsRemote sensingGeometryCryospheric studies and observationsClimate change and permafrostArctic and Antarctic ice dynamics