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January 18, 2026Atmosphere3 citationsOpen Access

Observed Change in Precipitation and Extreme Precipitation Months in the High Mountain Regions of Bulgaria

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NNNina NikolovaKRKalina RadevaSMSimeon Matev

Key Points

  • The study aims to analyze precipitation variability in Bulgaria's high mountain regions and the effects of atmospheric circulation on extreme precipitation events.
  • Analyzed precipitation data from 1937 to 2024 in Musala, Botev Peak, and Cherni Vrah.
  • Classified extreme precipitation months based on the 10th and 90th percentiles of precipitation distribution.
  • Compared two different time periods (1937–1980 and 1981–2024).
  • Evaluated atmospheric circulation's role by correlating extreme precipitation months with NAO and WeMO indices.
  • Statistically significant decreases in winter and spring precipitation were found at Musala and Cherni Vrah.
  • Increase in extremely dry months, particularly in winter and autumn since 1981.
  • Musala and Cherni Vrah showed reduced monthly precipitation concentration, while Botev Peak retained more erosive rainfall.
  • Positive NAO phases correlate with dry extremes, whereas positive WeMO phases correlate with wet extremes.

Abstract

Precipitation in high mountain areas is of critical importance as these regions are major sources of freshwater, supporting river basins, ecosystems, and downstream communities. Changes in precipitation regimes in these regions can have cascading impacts on water availability, agriculture, hydropower, and biodiversity. The present study aims to give new information about precipitation variability in high mountain regions of Bulgaria (Musala, Botev Peak, and Cherni Vrah) and to assess the role of large-scale atmospheric circulation patterns for the occurrence of extreme precipitation months. The study period is 1937–2024, and the classification of extreme precipitation months is based on the 10th and 90th percentiles of precipitation distribution. The temporal distribution of extreme precipitation months was analyzed by comparison of two periods (1937–1980 and 1981–2024). The impact of atmospheric circulation was evaluated by correlation between the number of extreme precipitation months and indices for the North Atlantic Oscillation (NAO) and Western Mediterranean Oscillation (WeMO). Results show a statistically significant decrease in winter and spring precipitation at Musala and Cherni Vrah, and a persistent drying tendency at Cherni Vrah across all seasons. The frequency of extremely wet months in winter and autumn has sharply declined since 1981, whereas extremely dry months have become more common, particularly during the cold season. Precipitation erosivity also exhibits station-specific responses, with Musala and Cherni Vrah showing reduced monthly concentration, while Botev Peak retains pronounced warm-season erosive rainfall. Circulation analysis indicates that positive NAOI phases favor dry extremes, while positive WeMOI phases enhance wet extremes. These findings reveal a shift toward drier and more seasonally uneven conditions in Bulgaria’s alpine zone, increasing hydrological risks related to drought, water scarcity, and soil erosion. The identified shifts in precipitation seasonality and intensity offer essential guidance for forecasting hydrological risks and mitigating soil erosion in vulnerable mountain ecosystems. The study underscores the need for adaptive water-resource strategies and enhanced monitoring in high-mountain areas.

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Cite This Study

Nikolova et al. (2026) studied this question.

synapsesocial.com/papers/696c7835eb60fb80d13965b5https://doi.org/10.3390/atmos17010093
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