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  4. Elevation-Dependent Glacier Velocity and X-band SAR Backscatter Indicate Seasonal and Topographic Controls on Tropical Glacier Dynamics in the Central and Southern Cordillera Blanca, Peru
 
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2026
Journal Article
Title

Elevation-Dependent Glacier Velocity and X-band SAR Backscatter Indicate Seasonal and Topographic Controls on Tropical Glacier Dynamics in the Central and Southern Cordillera Blanca, Peru

Abstract
Tropical glacier dynamics are influenced by topography, near-surface thermodynamic conditions, basal processes indirectly reflected in surface motion, and climate variability, yet the regional-scale relationship between radar backscatter and glacier motion remains poorly constrained. We present a regional analysis of ice surface velocity and X-band SAR backscatter across the central and southern Cordillera Blanca, Peru, using 72 high-resolution TerraSAR-X StripMap scenes acquired between December 2016 and May 2021. Ice surface velocities were derived from SAR intensity offset tracking, yielding a continuous 4.42-year record for 195 glaciers at an effective ground resolution of ∼60 m, with mean velocities ranging from 0.01 to 0.69 m d⁻¹. Radiometrically calibrated γ⁰ backscatter shows strong seasonal and elevation-dependent variability, with pronounced annual amplitudes at mid-elevations (∼5000-5500 m a.s.l.) and nearly invariant signals above ∼5800 m a.s.l. While γ⁰ decreases during the wet season, glacier velocities show recurrent dry-season accelerations. Correlations between detrended velocity residuals and precipitation are weak to moderate and spatially heterogeneous, whereas correlations with the Niño 3.4 index are spatially heterogeneous. In contrast, γ⁰-precipitation correlations are predominantly negative, consistent with the sensitivity of X band SAR to near-surface snow/firn moisture conditions. Cumulative displacement is predominantly linear over the 4.42 year observation period, with departures from linearity confined to dynamically complex sectors such as glacier tongues, crevassed basins, and areas adjacent to proglacial lakes. Overall, the results provide spatially distributed evidence for a vertically and seasonally stratified glacier response in the analyzed sectors: radar backscatter primarily reflects elevation- and season-dependent near-surface snow/firn conditions, whereas glacier surface velocity appears to be more strongly associated with glacier geometry and broader glacier-dynamic processes.
Author(s)
Beier, Hannes
Rheinisch-Westfälische Technische Hochschule Aachen
Strozzi, Tazio
Gamma Remote Sensing
Osten, Julian
Rheinisch-Westfälische Technische Hochschule Aachen
Kos, Andrew M.
Terrasense Switzerland Ltd
Amann, Florian
Fraunhofer-Einrichtung für Energieinfrastrukturen und Geotechnologien IEG  
Journal
IEEE journal of selected topics in applied earth observations and remote sensing  
Open Access
File(s)
Download (1.91 MB)
Rights
CC BY 4.0: Creative Commons Attribution
DOI
10.1109/JSTARS.2026.3719846
10.24406/publica-9947
Additional link
Full text
Language
English
Fraunhofer-Einrichtung für Energieinfrastrukturen und Geotechnologien IEG  
Keyword(s)
  • Cordillera Blanca

  • ENSO

  • ice surface velocity

  • offset tracking

  • TerraSAR-X

  • tropical glaciers

  • X-band SAR backscatter

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