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February 28, 2026˜The œcryosphere0 citationsOpen Access

Radar isochrones as constraints on paleo–ice-sheet model simulations in two off-divide regions of East Antarctica

JBJulien A. BodartVVVjeran VišnjevićSFSteven Franke

Key Points

  • The aim is to explore the use of radar isochrones to improve paleo-ice-sheet model simulations in East Antarctica's off-divide regions.
  • Utilized airborne radio-echo sounding data from previous and new surveys.
  • Employed the three-dimensional, thermo-mechanically coupled Parallel Ice-Sheet Model (PISM).
  • Traced and dated nine isochrones in the Wilkes Subglacial Basin (WSB) and seven in Dronning Maud Land (DML).
  • Simulated a commonly traced isochrone dated at approximately 91 ka across both sectors.
  • Isochrones were essential for calibrating model simulations in faster-flowing regions.
  • Diverse model representations of isochrones were observed despite good present-day geometry matches.
  • Demonstrated variability in transient ice-sheet evolution based on paleo-climate forcing and model parameterization.

Abstract

Abstract. Radio-echo sounding of polar ice masses has revealed extensive isochrones that have primarily been used to constrain paleo-accumulation rates, geothermal heat flux, and changes in ice-sheet dynamics in stable regions of the ice sheet. However, isochrones remain under-utilised for calibrating ice-sheet models over large spatial scales, particularly in areas far from the stable ice divide where isochrones are typically more disrupted and models likely perform less accurately. Here, we illustrate the utility of isochrones for constraining paleo-ice-sheet simulations in two off-divide areas of the East Antarctic Ice Sheet; the Wilkes Subglacial Basin (WSB) and the Dronning Maud Land (DML) regions. Using airborne radio-echo sounding data from both legacy and newly acquired surveys, and the three-dimensional, thermo-mechanically coupled Parallel Ice-Sheet Model (PISM), we show that traced and dated isochrones are essential for calibrating model simulations in faster-flowing regions of the ice sheet. Associated with this paper are two datasets of nine and seven newly traced isochrones spanning the Holocene and Last Interglacial (∼ 4.8–128.4 ka) across the WSB and DML sectors, respectively, which may be used in future modelling studies to assess the paleo-evolution of the East Antarctic Ice Sheet. Using a commonly traced isochrone dated at ∼ 91 ka across both sectors, we simulate its modelled equivalent along two off-divide transects and discuss its utility for constraining the model. We highlight the influence of paleo-climate forcing and model parameterisation, which can lead to widely different model representations of isochrones despite producing reasonable present-day ice-sheet geometries that are consistent with observations. This study demonstrates that achieving a good present-day match in ice-sheet geometries in off-divide areas does not necessarily translate to an appropriate transient ice-sheet evolution in the model and thus emphasises the need to incorporate isochrones as boundary conditions in paleo-ice-sheet model simulations.

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Cite This Study

Bodart et al. (2026) studied this question.

synapsesocial.com/papers/69a287240a974eb0d3c029echttps://doi.org/10.5194/tc-20-1379-2026
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Also Consider

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

  1. 1Extracting Dated Isochrones on Airborne Radar Data Across EastAntarctica for Input into 3-D Regional Ice Sheet Models2024
  2. 2Isochronally constrained ice flow evolution of Dronning Maud Land, Antarctica during the Last Glacial Period2024
  3. 3Review article: AntArchitecture – building an age–depth model from Antarctica's radiostratigraphy to explore ice-sheet evolution2025
  4. 4Review Article: Antarctica’s internal architecture: Towards a radiostratigraphically-informed age–depth model of the Antarctic ice sheets2024 · 7 citations
  5. 5Age-depth distribution in western Dronning Maud Land, East Antarctica, from three decades of radar surveys2024 · 1 citations