A one-dimensional temperature and age modeling study for selecting the drill site of the oldest ice core near Dome Fuji, Antarctica

Abstract ∼  1.5 million years will advance our understanding of climate system dynamics during the Quaternary. Recently, glaciological field surveys have been conducted to select the most suitable core location near Dome Fuji (DF), Antarctica. Specifically, ground-based radar-echo soundings have been used to acquire highly detailed images of bedrock topography and internal ice layers. In this study, we use a one-dimensional (1-D) ice-flow model to compute the temporal evolutions of age and temperature, in which the ice flow is linked with not only transient climate forcing associated with past glacial–interglacial cycles but also transient basal melting diagnosed along the evolving temperature profile. We investigated the influence of ice thickness, accumulation rate, and geothermal heat flux on the age and temperature profiles. The model was constrained by the observed temperature and age profiles reconstructed from the DF ice-core analysis. The results of sensitivity experiments indicate that ice thickness is the most crucial parameter influencing the computed age of the ice because it is critical to the history of basal temperature and basal melting, which can eliminate old ice. The 1-D model was applied to a 54 km long transect in the vicinity of DF and compared with radargram data. We found that the basal age of the ice is mostly controlled by the local ice thickness, demonstrating the importance of high-spatial-resolution surveys of bedrock topography for selecting ice-core drilling sites.

Standort
Deutsche Nationalbibliothek Frankfurt am Main
Umfang
Online-Ressource
Sprache
Englisch

Erschienen in
A one-dimensional temperature and age modeling study for selecting the drill site of the oldest ice core near Dome Fuji, Antarctica ; volume:17 ; number:6 ; year:2023 ; pages:2543-2562 ; extent:20
The Cryosphere ; 17, Heft 6 (2023), 2543-2562 (gesamt 20)

Urheber
Obase, Takashi
Abe-Ouchi, Ayako
Saito, Fuyuki
Tsutaki, Shun
Fujita, Shuji
Kawamura, Kenji
Motoyama, Hideaki

DOI
10.5194/tc-17-2543-2023
URN
urn:nbn:de:101:1-2023070604323204932256
Rechteinformation
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Letzte Aktualisierung
14.08.2025, 10:44 MESZ

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Beteiligte

  • Obase, Takashi
  • Abe-Ouchi, Ayako
  • Saito, Fuyuki
  • Tsutaki, Shun
  • Fujita, Shuji
  • Kawamura, Kenji
  • Motoyama, Hideaki

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