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Evolving glacier patterns in the Chenab River Basin (1993-2021): Drivers and environmental implications
Siddhi Garg1, Vibhor Agarwal2, Umesh K Haritashya3
1Department of Geology and Environmental Geosciences, University of Dayton, Dayton, OH 45469, United States of America.
The Science of the Total Environment
|January 14, 2025
Summary
Glaciers in Jammu and Kashmir are retreating, but some in the Chenab River basin show localized advances. Debris cover and precipitation influence these complex glacier dynamics, not just climate change.
Area of Science:
- Glaciology
- Climate Science
- Himalayan Geography
Background:
- Glaciers in Jammu and Kashmir are retreating faster than in the northwestern Himalayas.
- Some Chenab River basin glaciers exhibit periodic advancement and mass gain, contrasting with overall retreat trends.
- Localized glacier dynamics require further investigation beyond general climate change concerns.
Purpose of the Study:
- To investigate the spatio-temporal evolution of glaciers in the Bhut and Warwan sub-basins of the Chenab River basin from 1993 to 2021.
- To understand the factors influencing localized glacier dynamics, including advance and retreat.
- To assess changes in glacier area, thickness, debris cover, and velocity.
Main Methods:
- Analysis of glacier spatio-temporal evolution using remote sensing data from 1993-2021.
- Quantification of area loss, surface thinning, debris cover changes, and glacial velocity.
- Comparative analysis between Bhut and Warwan sub-basins.
Main Results:
- Overall area loss of 6.7%, surface thinning of -0.3 ± 0.4 ma⁻¹, increased debris cover (11%), and reduced glacial velocity (54% in Bhut, 20% in Warwan) were observed.
- Periodic, insignificant glacier advancement occurred on nine glaciers, with twelve showing a balanced state, while 113 glaciers disappeared.
- The Bhut sub-basin exhibited higher average velocity, slowdown, and thinning compared to the Warwan sub-basin, influenced by precipitation and debris cover.
Conclusions:
- Climate drives long-term and periodic glacier responses, but spatial variability is largely controlled by debris thickness.
- Localized glacier advances do not represent the overall state or recent dynamics of glaciers in the region.
- Debris cover and precipitation are key factors influencing localized glacier behavior and spatial variability.
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