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学術論文

Amazon Hydrology From Space: Scientific Advances and Future Challenges

Authors

Fassoni‐Andrade,  Alice César
External Organizations;

Fleischmann,  Ayan Santos
External Organizations;

Papa,  Fabrice
External Organizations;

Paiva,  Rodrigo Cauduro Dias de
External Organizations;

Wongchuig,  Sly
External Organizations;

Melack,  John M.
External Organizations;

Moreira,  Adriana Aparecida
External Organizations;

Paris,  Adrien
External Organizations;

Ruhoff,  Anderson
External Organizations;

Barbosa,  Claudio
External Organizations;

Maciel,  Daniel Andrade
External Organizations;

Novo,  Evlyn
External Organizations;

Durand,  Fabien
External Organizations;

Frappart,  Frédéric
External Organizations;

Aires,  Filipe
External Organizations;

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Abrahão,  Gabriel Medeiros
Potsdam Institute for Climate Impact Research;

Ferreira‐Ferreira,  Jefferson
External Organizations;

Espinoza,  Jhan Carlo
External Organizations;

Laipelt,  Leonardo
External Organizations;

Costa,  Marcos Heil
External Organizations;

Espinoza‐Villar,  Raul
External Organizations;

Calmant,  Stéphane
External Organizations;

Pellet,  Victor
External Organizations;

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フルテキスト (公開)

26647oa.pdf
(出版社版), 11MB

付随資料 (公開)
There is no public supplementary material available
引用

Fassoni‐Andrade, A. C., Fleischmann, A. S., Papa, F., Paiva, R. C. D. d., Wongchuig, S., Melack, J. M., Moreira, A. A., Paris, A., Ruhoff, A., Barbosa, C., Maciel, D. A., Novo, E., Durand, F., Frappart, F., Aires, F., Abrahão, G. M., Ferreira‐Ferreira, J., Espinoza, J. C., Laipelt, L., Costa, M. H., Espinoza‐Villar, R., Calmant, S., & Pellet, V. (2021). Amazon Hydrology From Space: Scientific Advances and Future Challenges. Reviews of Geophysics, 59(4):. doi:10.1029/2020RG000728.


引用: https://publications.pik-potsdam.de/pubman/item/item_26647
要旨
As the largest river basin on Earth, the Amazon is of major importance to the world's climate and water resources. Over the past decades, advances in satellite-based remote sensing (RS) have brought our understanding of its terrestrial water cycle and the associated hydrological processes to a new era. Here, we review major studies and the various techniques using satellite RS in the Amazon. We show how RS played a major role in supporting new research and key findings regarding the Amazon water cycle, and how the region became a laboratory for groundbreaking investigations of new satellite retrievals and analyses. At the basin-scale, the understanding of several hydrological processes was only possible with the advent of RS observations, such as the characterization of "rainfall hotspots" in the Andes-Amazon transition, evapotranspiration rates, and variations of surface waters and groundwater storage. These results strongly contribute to the recent advances of hydrological models and to our new understanding of the Amazon water budget and aquatic environments. In the context of upcoming hydrology-oriented satellite missions, which will offer the opportunity for new synergies and new observations with finer space-time resolution, this review aims to guide future research agenda toward integrated monitoring and understanding of the Amazon water from space. Integrated multidisciplinary studies, fostered by international collaborations, set up future directions to tackle the great challenges the Amazon is currently facing, from climate change to increased anthropogenic pressure.