Articles | Volume 18, issue 1
https://doi.org/10.5194/tc-18-425-2024
https://doi.org/10.5194/tc-18-425-2024
Research article
 | 
30 Jan 2024
Research article |  | 30 Jan 2024

Spatial distribution of vertical density and microstructure profiles in near-surface firn around Dome Fuji, Antarctica

Ryo Inoue, Shuji Fujita, Kenji Kawamura, Ikumi Oyabu, Fumio Nakazawa, Hideaki Motoyama, and Teruo Aoki

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Cited articles

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Alexander, P. M., Tedesco, M., Koenig, L., and Fettweis, X.: Evaluating a Regional Climate Model Simulation of Greenland Ice Sheet Snow and Firn Density for Improved Surface Mass Balance Estimates, Geophys. Res. Lett., 46, 12073–12082, https://doi.org/10.1029/2019GL084101, 2019. 
Alley, R. B.: Firn densification by grain-boundary sliding: a first model, J. Phys. Colloq., 48, C1-249–C1-256, https://doi.org/10.1051/jphyscol:1987135, 1987. 
Alley, R. B.: Concerning the Deposition and Diagenesis of Strata in Polar Firn, J. Glaciol., 34, 283–290, https://doi.org/10.3189/S0022143000007024, 1988. 
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Short summary
We measured the density, microstructural anisotropy, and specific surface area (SSA) of six firn cores collected within 60 km of Dome Fuji, Antarctica. We found a lack of significant density increase, development of vertically elongated microstructures, and a rapid decrease in SSA in the top few meters due to the metamorphism driven by water vapor transport under a temperature gradient. We highlight the significant spatial variability in the properties, which depends on the accumulation rate.