Meltwater orientations modify seismic anisotropy in temperate ice
Meltwater orientations modify seismic anisotropy in temperate ice
Date
2024-07-04
Authors
Seltzer, Cassandra
Llorens, Maria-Gema
Cross, Andrew J.
Llorens, Maria-Gema
Cross, Andrew J.
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DOI
10.1029/2024GL110131
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Keywords
Cryoseismology
Melt network orientation
Ice flow
Temperate ice
Seismic anisotropy
Ice microstructure
Melt network orientation
Ice flow
Temperate ice
Seismic anisotropy
Ice microstructure
Abstract
Seismology is increasingly used to infer the magnitude and direction of glacial ice flow. However, the effects of interstitial meltwater on seismic properties remain poorly constrained. Here, we extend previous studies on seismic anisotropy in temperate ices to consider the role of melt preferred orientation (MPO). We used the ELLE numerical toolbox to simulate microstructural shear deformation of temperate ice with variable MPO strength and orientation, and calculated the effective seismic properties of these numerical ice-melt aggregates. Our models demonstrate that even 3.5% melt volume is sufficient to rotate fast directions by up to 90°, to increase Vp anisotropy by up to +110%, and to modify Vs anisotropy by −9 to +36%. These effects are especially prominent at strain rates ≥3.17 × 10−12 s−1. MPO may thus obscure the geophysical signatures of temperate ice flow in regions of rapid ice discharge, and is therefore pivotal for understanding ice mass loss.
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© The Author(s), 2024. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Seltzer, C., Llorens, M., & Cross, A. (2024). Meltwater orientations modify seismic anisotropy in temperate ice. Geophysical Research Letters, 51(13), e2024GL110131, https://doi.org/10.1029/2024GL110131.
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Seltzer, C., Llorens, M., & Cross, A. (2024). Meltwater orientations modify seismic anisotropy in temperate ice. Geophysical Research Letters, 51(13), e2024GL110131.