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April 19, 2026Hydrology2 citationsOpen Access

Long-Term Spatiotemporal Dynamics of Snow Cover in the Arys River Basin (Western Tien Shan)

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AKAsyma KoshimZTZhassulan TakibayevAGAbror Gafurov

Key Points

  • This research aims to analyze the long-term variations and trends in snow cover in the Arys River basin.
  • Utilized daily satellite data from MODIS Terra and Aqua from 2000 to 2024
  • Employed Terra-Aqua composite imagery to reduce cloud cover effects
  • Validated satellite-derived estimates with data from five meteorological stations
  • Conducted trend analysis and applied Sen’s slope estimator to assess changes in snow cover area
  • Snow-covered area varied from 16.2% to 54.1%, averaging 34.4% during the cold season
  • Analysis revealed a weak negative trend in snow cover
  • Average annual reduction in snow cover area estimated at 0.37% per year
  • Most significant declines were noted in mid-elevation mountain zones

Abstract

Seasonal snow cover in mountainous regions represents a critical natural freshwater reserve for arid and semi-arid areas of Central Asia. This study evaluates the long-term (2000–2024) spatiotemporal dynamics of snow cover in the Arys River basin, located within the Western Tien Shan. The research utilizes daily satellite data from MODIS Terra and Aqua, along with data from the MODSNOW automated processing system. Terra-Aqua composite imagery was employed to minimize cloud cover effects. Satellite-derived estimates were validated against observational data from five meteorological stations of the Republican State Enterprise (RSE) “Kazhydromet”. The results indicate significant interannual variability in snow cover extent: the snow-covered area during the cold season ranged from 16.2% to 54.1%, with a mean value of 34.4%. Trend analysis revealed a weak negative trend, while Sen’s slope estimator showed an average annual reduction in snow cover area of 0.37% per year. The most pronounced decline in snow accumulation was observed in mid-elevation mountain zones. These findings suggest potential increased risks to seasonal water availability in the Arys River basin and, more broadly, across the Syr Darya basin under ongoing climate change conditions. The results provide a scientific basis for quantifying climate impacts and developing adaptation strategies for integrated water resources management in Central Asia.

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Cite This Study

Koshim et al. (2026) studied this question.

synapsesocial.com/papers/69e473bd010ef96374d8f8f6https://doi.org/10.3390/hydrology13040115
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