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Northward shift of Indian summer monsoon and intensifying winter westerlies cause stronger precipitation seasonality over Pamirs and its downstream basins in the 21st century. | LitMetric

AI Article Synopsis

  • Hydroclimate changes in the Pamirs and its downstream basins, notably the Indus, Tarim, Amu Darya, and Syr Darya Rivers, are influenced by variations in the Indian summer monsoon and mid-latitude westerlies.
  • Research using selected models from the CMIP6 dataset reveals a distinct dipolar pattern in summer and winter precipitation, with the central Indus River Basin becoming wetter in summer and drier in winter.
  • This seasonal shift increases water resource vulnerability in these regions, highlighting the importance of the Pamirs in affecting water availability, which necessitates the integration of precipitation changes into social planning policies.

Article Abstract

Hydroclimate will change over Pamirs and its downstream basins (PDB), including Indus River, Tarim River, Amu Darya and Syr Darya Basins, in response to the variation of Indian summer monsoon (ISM) and mid-latitude westerlies. However, the precipitation variation and its mechanism over PDB in the 21st century are yet not fully understood. Here, the best models ensemble selected from 25 CMIP6 models under SSP2-4.5 and SSP5-8.5 scenarios is applied to detect the precipitation variations over PDB in the 21st century. A remarkable dipolar pattern is found in both summer and winter precipitation over PDB, particularly in the central Indus River Basin and upper Amu and Syr Darya Basins. The central Indus River Basin (upper Amu and Syr Darya Basins) will experience an increasingly wet (dry) summer in response to northward ISM and a dry (wet) winter driven by mid-latitude westerlies. The amplifying dipolar pattern of seasonal precipitation thus increases the water resource vulnerability over PDB and emphasizes the role of Pamirs in modulating the water resources over surrounding basins, especially the Amu Darya and Syr Darya Basins in the future. The findings underscore the need for prioritizing policies by considering the impacts of precipitation seasonality on social planning.

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Source
http://dx.doi.org/10.1016/j.scitotenv.2024.171891DOI Listing

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