Projects per year
Abstract
Increasing climatic and human pressures are changing the world's water resources and hydrological processes at unprecedented rates. Understanding these changes requires comprehensive monitoring of water resources. Hydrogeodesy, the science that measures the Earth's solid and aquatic surfaces, gravity field, and their changes over time, delivers a range of novel monitoring tools that are complementary to traditional hydrological methods. It encompasses geodetic technologies such as Altimetry, Interferometric Synthetic Aperture Radar (InSAR), Gravimetry, and Global Navigation Satellite Systems (GNSS). Beyond quantifying these changes, there is a need to understand how hydrogeodesy can contribute to more ambitious goals dealing with water-related and sustainability sciences. Addressing this need, we combine a meta-analysis of over 3,000 articles to chart the range, trends, and applications of satellite-based hydrogeodesy with an expert elicitation that systematically assesses the potential of hydrogeodesy. We find a growing body of literature relating to the advancements in hydrogeodetic methods, their accuracy and precision, and their inclusion in hydrological modeling, with a considerably smaller portion related to understanding hydrological processes, water management, and sustainability sciences. The meta-analysis also shows that while lakes, groundwater and glaciers are commonly monitored by these technologies, wetlands or permafrost could benefit from a wider range of applications. In turn, the expert elicitation envisages the potential of hydrogeodesy to help solve the 23 Unsolved Questions of the International Association of Hydrological Sciences and advance knowledge as guidance toward a safe operating space for humanity. It also highlights how this potential can be maximized by combining hydrogeodetic technologies simultaneously, exploiting artificial intelligence, and accurately integrating other Earth science disciplines. Finally, we call for a coordinated way forward to include hydrogeodesy in tertiary education and broaden its application to water-related and sustainability sciences in order to exploit its full potential.
Original language | English |
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Article number | e2023WR037020 |
Number of pages | 38 |
Journal | Water Resources Research |
Volume | 60 |
Issue number | 11 |
DOIs | |
Publication status | Published - Nov 2024 |
MoE publication type | A2 Review article, Literature review, Systematic review |
Keywords
- altimetry
- GNSS
- gravimetry
- hydrogeodesy
- InSAR
- planetary boundaries
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AQUAGUARD (ERC-2023-STG/Porkka): Protecting the planets bloodstream: feasible and just opportunities to safeguard freshwaters Earth system functions
Porkka, M. (Principal investigator)
01/01/2024 → 31/12/2028
Project: EU Horizon Europe ERC
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SOS.aquaterra: Respecting safe operating spaces: opportunities to meet future food demand with sustainable use of water and land resources
Kummu, M. (Principal investigator), Porkka, M. (Project Member), Hounkpatin, K. (Project Member), Sandström, V. (Project Member), Chrisendo, D. (Project Member), Piipponen, J. (Project Member), Virkki, V. (Project Member), Niva, V. (Project Member), Chrysafi, A. (Project Member), Heikonen, S. (Project Member), Jalava, M. (Project Member), Kallio, M. (Project Member) & Niu, Q. (Project Member)
01/04/2019 → 28/02/2025
Project: EU: ERC grants