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February 22, 2026International Journal of Biometeorology3 citationsOpen Access

Biometeorological conditions at Polish Antarctic Station (King George Island, West Antarctica) according to Universal Thermal Climate Index, 2013–2023

JPJoanna PlenzlerKPKatarzyna PiotrowiczMOMałgorzata Owczarek

Key Points

  • This research aims to estimate thermal stress in the South Shetland Islands, Antarctica, using the UTCI.
  • Calculated hourly UTCI values from 2013 to 2023 utilizing weather data from the Henryk Arctowski Station.
  • Analyzed air temperature, humidity, global solar radiation, and wind speed data.
  • Classified conditions based on UTCI values to determine thermal stress levels.
  • Identified strong cold stress in 40.5% of recorded cases and very strong cold stress in 25.3%.
  • Favorable conditions without thermal stress occurred rarely, lasting 7-9 hours, mainly from December to March.
  • Some UTCI values exceeded established stress scales due to high wind speeds, reclassified as extreme cold stress.

Abstract

The Universal Thermal Climate Index (UTCI) was used to estimate thermal stress for humans in the South Shetland Islands (West Antarctica), the region in Antarctica with the highest number of scientific stations and visiting tourists. This was done to analyze the duration of comfortable weather conditions, which are crucial for conducting fieldwork and other outdoor tasks. The UTCI is one of the most commonly used climate thermal indices, but it had not previously been calculated for any region in Antarctica. The research was based on hourly data (air temperature, humidity, global solar radiation and wind speed) derived from the Henryk Arctowski Polish Antarctic Station between 2013 and 2023. The range of hourly UTCI values indicates conditions ranging from no thermal stress to extreme cold stress, with predominant strong cold stress (–26.9 to − 13.0 °C; 40.5% of cases) and very strong cold stress (–39.9 to − 27.0 °C; 25.3% of cases). In such conditions, it is recommended that physical activity is increased and that the extremities and face are protected from the cold while working outside, as well as increasing the thermo-isolation properties of clothing. The same thermal stress class remains for more than one day sporadically. The most favourable conditions for spending time outside (without thermal stress or with slight cold stress), which lasted 7–9 consecutive hours, occurred rarely and only from December to March. Due to high wind speed, some UTCI values fall outside the thermal stress scale; nevertheless, the authors classified these as extreme cold stress and suggest developing the UTCI formula to make it more applicable in regions where very high wind speed occur.

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Cite This Study

Plenzler et al. (2026) studied this question.

synapsesocial.com/papers/699a9d3c482488d673cd30bdhttps://doi.org/10.1007/s00484-025-03099-9
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