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Unveiling Cryosphere Dynamics by Distributed Acoustic Sensing and Data‐Driven Hydro‐Thermo Coupled Simulation

Haoyuan Sun et al · Wiley · 2025

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Abstract As global warming continues, the Earth's cryosphere is experiencing severe degradation. This study leverages a novel combination of distributed acoustic sensing (DAS) and artificial intelligence to monitor and decipher cryospheric dynamics. We have developed an advanced time‐lapse surface wave analysis workflow to capture shear wave velocity changes (Δv) during a 2‐month controlled permafrost thaw experiment in Fairbanks, Alaska. To understand the underlying physical mechanisms of Δv, multimodal rock‐physics simulations were conducted to associate the observed Δv to hydrological and thermal processes like heating and rainfall events. Furthermore, we employ a physics‐guided deep learning algorithm alongside interpretable techniques to evaluate the impact of various physical factors and shed light on the cryospheric hydro‐thermo coupling mechanisms. This study highlights the potential of using DAS and data‐driven rock‐physics simulation for complex cryosphere monitoring and offers a comprehensive view of the permafrost's thawing dynamics.

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APA 7

al, H. S. E. (2025). Unveiling Cryosphere Dynamics by Distributed Acoustic Sensing and Data‐Driven Hydro‐Thermo Coupled Simulation. https://doi.org/10.1029/2024GL111188

MLA

al, Haoyuan Sun et. "Unveiling Cryosphere Dynamics by Distributed Acoustic Sensing and Data‐Driven Hydro‐Thermo Coupled Simulation." 2025. https://doi.org/10.1029/2024GL111188.

Chicago

al, Haoyuan Sun et. 2025. "Unveiling Cryosphere Dynamics by Distributed Acoustic Sensing and Data‐Driven Hydro‐Thermo Coupled Simulation.". https://doi.org/10.1029/2024GL111188.

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al, H. S. E. 2025, Unveiling Cryosphere Dynamics by Distributed Acoustic Sensing and Data‐Driven Hydro‐Thermo Coupled Simulation, Wiley, available at: https://doi.org/10.1029/2024GL111188 [Accessed 7 Aug. 2026].

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Titolo
Unveiling Cryosphere Dynamics by Distributed Acoustic Sensing and Data‐Driven Hydro‐Thermo Coupled Simulation
Autore / collaboratori
Haoyuan Sun et al
Editore
Wiley
Anno di pubblicazione
2025
ISSN
0094-8276
ISSN
0094-8276
Lingua
Inglés

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