Detecting long-term Arctic surface water changes
Author:
Publisher
Springer Science and Business Media LLC
Subject
Social Sciences (miscellaneous),Environmental Science (miscellaneous)
Link
https://www.nature.com/articles/s41558-023-01836-9.pdf
Reference15 articles.
1. Webb, E. E. et al. Permafrost thaw drives surface water decline across lake-rich regions of the Arctic. Nat. Clim. Change 12, 841–846 (2022).
2. Sharma, R. C., Tateishi, R., Hara, K. & Nguyen, L. V. Developing Superfine Water Index (SWI) for global water cover mapping using MODIS data. Remote Sens. 2015, 13807–13841 (2015).
3. Olthof, I. & Rainville, T. Dynamic surface water maps of Canada from 1984 to 2019 Landsat satellite imagery. Remote Sens. Environ. https://doi.org/10.1016/j.rse.2022.113121 (2022).
4. Pickens, A. H. et al. Mapping and sampling to characterize global inland water dynamics from 1999 to 2018 with full Landsat time-series. Remote Sens. Environ. 243, 111792 (2020).
5. Travers-Smith, H., Lantz, T. C., Fraser, R. H. & Kokelj, S. V. Changes in surface water dynamics across northwestern Canada are influenced by wildfire and permafrost thaw. Environ. Res. Lett. 17, 114021 (2022).
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1. Reply to: Detecting long-term Arctic surface water changes;Nature Climate Change;2023-10-05
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