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Perspective on Satellite-Based Land Data Assimilation to Estimate Water Cycle Components in an Era of Advanced Data Availability and Model Sophistication

Authors :
Gabriëlle J. M. De Lannoy
Michel Bechtold
Clément Albergel
Luca Brocca
Jean-Christophe Calvet
Alberto Carrassi
Wade T. Crow
Patricia de Rosnay
Michael Durand
Barton Forman
Gernot Geppert
Manuela Girotto
Harrie-Jan Hendricks Franssen
Tobias Jonas
Sujay Kumar
Hans Lievens
Yang Lu
Christian Massari
Valentijn R. N. Pauwels
Rolf H. Reichle
Susan Steele-Dunne
Source :
Frontiers in Water. 4
Publication Year :
2022
Publisher :
United States: NASA Center for Aerospace Information (CASI), 2022.

Abstract

The beginning of the 21st century is marked by a rapid growth of land surface satellite data and model sophistication. This offers new opportunities to estimate multiple components of the water cycle via satellite-based land data assimilation (DA) across multiple scales. By resolving more processes in land surface models and by coupling the land, the atmosphere, and other Earth system compartments, the observed information can be propagated to constrain additional unobserved variables. Furthermore, access to more satellite observations enables the direct constraint of more and more components of the water cycle that are of interest to end users. However, the finer level of detail in models and data is also often accompanied by an increase in dimensions, with more state variables, parameters, or boundary conditions to estimate, and more observations to assimilate. This requires advanced DA methods and efficient solutions. One solution is to target specific observations for assimilation based on a sensitivity study or coupling strength analysis, because not all observations are equally effective in improving subsequent forecasts of hydrological variables, weather, agricultural production, or hazards through DA. This paper offers a perspective on current and future land DA development, and suggestions to optimally exploit advances in observing and modeling systems.

Details

Language :
English
ISSN :
26249375
Volume :
4
Database :
NASA Technical Reports
Journal :
Frontiers in Water
Notes :
372217.04.12, , Belspo EODAHR (SR/00/376), , H 2020 SHui (773903), , FWO CONSOLIDATION (G0A7320N), , ESA 4D-MED (4000136272/21/I-EF), , KU Leuven C1 (C14/21/057)
Publication Type :
Report
Accession number :
edsnas.20220010193
Document Type :
Report
Full Text :
https://doi.org/10.3389/frwa.2022.981745