A decade of monthly frontal ablation at 147 tidewater glaciers in Svalbard

We present a regional-scale monthly analysis of frontal ablation at 147 tidewater glacier basins in Svalbard from January 2015 through December 2024. A multi-temporal, deep-learning segmentation model was implemented to reduce the manual labor cost of mapping 203 294 terminus positions, yielding 15 647 monthly-averaged calving fronts derived from Sentinel-1 SAR imagery. In addition, a monthly ice discharge time series is developed from the ITS_LIVE velocity database, as well as regionally existing ice thickness products. To account for ice mass loss due to surface processes between the fluxgate and terminus (i.e. the glacier domain), the climatic mass balance is integrated over the domain area using monthly aggregated daily outputs from the MAR regional climate model. The result is a high spatio-temporal resolution frontal ablation time series (15 500 monthly estimates), allowing new insights and progress towards a process understanding of frontal ablation. The mean annual frontal ablation rate across all glaciers from 2015 to 2024 is 21.57±0.97 Gt yr −1 . The Austfonna ice cap accounts for ∼48 % of Svalbard's frontal ablation, due to the dominant Austfonna Basin 3, with a 5.05±0.35 Gt yr −1 annually averaged rate. As frontal ablation measurements have historically been limited to annual and decadal temporal resolution, this dataset addresses the intra-annual and seasonal variability knowledge gap, while providing valuable reference data for the modeling community. The frontal ablation, ice discharge, and calving front time series are publicly available at https://doi.org/10.5281/zenodo.19481461 (Pyles et al., 2026).

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Publication Details

Journal
Earth system science data
Published
2026-10-06
DOI
https://doi.org/10.5194/essd-18-7319-2026
Primary Topic
Cryospheric studies and observations
Type
article
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article

A decade of monthly frontal ablation at 147 tidewater glaciers in Svalbard

Thorsten Seehaus, Nora Gourmelon, William Hardy Kochtitzky, Vincent Christlein et al.
Earth system science data
Cryospheric studies and observations
article

A decade of monthly frontal ablation at 147 tidewater glaciers in Svalbard

Thorsten Seehaus, Nora Gourmelon, William Hardy Kochtitzky, Vincent Christlein, Anna Wendleder, Marcel Dreier, D. R. Pyles
article en

Abstract

We present a regional-scale monthly analysis of frontal ablation at 147 tidewater glacier basins in Svalbard from January 2015 through December 2024. A multi-temporal, deep-learning segmentation model was implemented to reduce the manual labor cost of mapping 203 294 terminus positions, yielding 15 647 monthly-averaged calving fronts derived from Sentinel-1 SAR imagery. In addition, a monthly ice discharge time series is developed from the ITS_LIVE velocity database, as well as regionally existing ice thickness products. To account for ice mass loss due to surface processes between the fluxgate and terminus (i.e. the glacier domain), the climatic mass balance is integrated over the domain area using monthly aggregated daily outputs from the MAR regional climate model. The result is a high spatio-temporal resolution frontal ablation time series (15 500 monthly estimates), allowing new insights and progress towards a process understanding of frontal ablation. The mean annual frontal ablation rate across all glaciers from 2015 to 2024 is 21.57±0.97 Gt yr −1 . The Austfonna ice cap accounts for ∼48 % of Svalbard's frontal ablation, due to the dominant Austfonna Basin 3, with a 5.05±0.35 Gt yr −1 annually averaged rate. As frontal ablation measurements have historically been limited to annual and decadal temporal resolution, this dataset addresses the intra-annual and seasonal variability knowledge gap, while providing valuable reference data for the modeling community. The frontal ablation, ice discharge, and calving front time series are publicly available at https://doi.org/10.5281/zenodo.19481461 (Pyles et al., 2026).

Earth system science dataVol. 18(10)
Friedrich-Alexander-Universität Erlangen-Nürnberg (DE), University of New England (US), Deutsches Zentrum für Luft- und Raumfahrt e. V. (DLR) (DE)
Openalex Percentile: Top 18%
Cryospheric studies and observations
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