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March 7, 2026Earth system science data2 citationsOpen Access

Elevation change of the Greenland Ice Sheet and its peripheral glaciers: 1992–2023

JNJohan NilssonUppsala UniversityAGAlex S. GardnerJet Propulsion Laboratory

Key Points

  • This research aims to assess elevation changes and mass loss in the Greenland Ice Sheet and its peripheral glaciers from 1992 to 2023.
  • Integrated data from multiple satellite altimetry missions
  • Incorporated external velocity and elevation data to enhance accuracy
  • Used a digital elevation model for analyzing absolute elevation changes
  • Analyzed mass loss patterns over three decades from 1992 to 2023
  • Greenland Ice Sheet experienced an average mass loss of −160 ± 17 Gt a−1
  • Peripheral glaciers showed an average mass loss of −23 ± 5 Gt a−1
  • Initial years had a positive mass balance due to favorable conditions, later reversing to increasing mass loss
  • Findings indicate accelerating impacts of climate change on ice dynamics and mass balance

Abstract

Abstract. The integration of data from multiple satellite altimetry missions, each offering unique observational characteristics, has enabled us to discern both short-term variability and long-term climate trends affecting Greenland's peripheral glaciers and the Greenland Ice Sheet (GrIS). Our methodology, informed by lessons learned from analogous efforts in Antarctica and by improved incorporation of external velocity and elevation data to reduce bias in elevation-change estimates, ensures the consistency and reliability of the derived dataset. An additional enhancement of this product is the inclusion of a digital elevation model, which facilitates the analysis of changes in absolute elevation. The dataset covers the years 1992–2023 and is publicly available as part of NASA's Making Earth System Data Records for Use in Research Environments (MEaSUREs) Inter-Mission Time Series of Land Ice Velocity and Elevation (ITSLIVE) project (https: //doi. org/10. 5067/ICFVI7DKHZJV, Nilsson et al. , 2026). Our analysis reveals significant patterns of mass loss across the GrIS. We find that the ice sheet and peripheral glaciers experienced average mass losses of −160 ± 17 and −23 ± 5 Gt a−1, respectively, over the 1992–2023 period, with notable temporal variations. Specifically, the early years of the record exhibit a positive mass balance, likely driven by anomalously positive surface mass balance. However, this trend reverses in later years, with a pronounced increase in mass-loss rates that highlights the accelerating impact of climate change on ice-sheet dynamics and surface mass balance. Moreover, our analysis underscores the importance of considering peripheral glaciers alongside the continental ice sheet when assessing overall mass trends. By incorporating data from peripheral glaciers, we provide a more comprehensive understanding of Greenland's total contributions to global sea-level rise. Our findings reveal not only the magnitude of mass loss but also its evolution through time, emphasizing the need for continued monitoring and research to better understand the impacts of climate change on Earth's cryosphere.

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Cite This Study

Nilsson et al. (2026) studied this question.

synapsesocial.com/papers/69abc1765af8044f7a4ea2e2https://doi.org/10.5194/essd-18-1729-2026
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

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