Testing a low-cost ultrasonic sensor to monitor snow depth under harsh Antarctic weather conditions in the South Shetland Islands

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URI: http://hdl.handle.net/10498/39017
DOI: 10.1017/S0954102025100308
ISSN: 1365-2079
ISSN: 0954-1020
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2025-07-16Department
MatemáticasSource
Antarctic Science - 2025Abstract
Monitoring snow depth in Antarctica is essential for understanding permafrost dynamics and soil thermal regimes. This study assesses
the performance of low-cost, high-resolution, autocleaning ultrasonic sensors (MB7574-SCXL-Maxsonar-WRST7), powered by lithium
D-type battery Geoprecision-Box dataloggers, in the South Shetland Islands. Traditional methods for estimating snow thickness, such as
air temperature sensors in snow stakes, are economical but involve highmaintenance costs and various complexities. To address these issues,
we deployed ultrasonic sensors across 12 stations on Livingston and Deception islands from early 2023 to early 2024. Located at altitudes
from 15 to 274 m above sea level and with varying wind exposures, these devices demonstrated notable durability and reliability, with only
one sensor failure occurring due to structural damage.Data processing involved using an R script to filter out noise, and this process provided
accurate hourly snow-depth measurements and revealed significant spatial and altitudinal variability, with depths ranging from20 to 110 cm.
Snow accumulation began in April and peaked in August and October, with major snowfall events contributing temporarily to snow depth
but not to long-term accumulation. Our findings suggest that these sensors, as low-cost alternatives, could be integrated into networks such
as the Global Terrestrial Network for Permafrost (GTN-P), supporting climate and permafrost studies.
Subjects
Antarctica; monitoring; snow; temperature; ultrasonicCollections
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