Huggins, X., Gleeson, T., Villholth, K.G., Rocha, J.C., & Famiglietti, J.S. (2024). Groundwaterscapes: A Global Classification and Mapping of Groundwater's Large‐Scale Socioeconomic, Ecological, and Earth System Functions. Water Resources Research 60 (10) e2023WR036287. 10.1029/2023WR036287.
Preview |
Text
Water Resources Research - 2024 - Huggins - Groundwaterscapes A Global Classification and Mapping of Groundwater s.pdf - Published Version Available under License Creative Commons Attribution. Download (5MB) | Preview |
Abstract
Groundwater is a dynamic component of the global water cycle with important social, economic, ecological, and Earth system functions. We present a new global classification and mapping of groundwater systems, which we call groundwaterscapes, that represent predominant configurations of large-scale groundwater system functions. We identify and map 15 groundwaterscapes which offer a new lens to conceptualize, study, model, and manage groundwater. Groundwaterscapes are derived using a novel application of sequenced self-organizing maps that capture patterns in groundwater system functions at the grid cell level (∼10 km), including groundwater-dependent ecosystem type and density, storage capacity, irrigation, safe drinking water access, and national governance. All large aquifer systems of the world are characterized by multiple groundwaterscapes, highlighting the pitfalls of treating these groundwater bodies as lumped systems in global assessments. We evaluate the distribution of Global Groundwater Monitoring Network wells across groundwaterscapes and find that industrial agricultural regions are disproportionately monitored, while several groundwaterscapes have next to no monitoring wells. This disparity undermines the ability to understand system dynamics across the full range of settings that characterize groundwater systems globally. We argue that groundwaterscapes offer a conceptual and spatial tool to guide model development, hypothesis testing, and future data collection initiatives to better understand groundwater's embeddedness within social-ecological systems at the global scale.
Item Type: | Article |
---|---|
Research Programs: | Biodiversity and Natural Resources (BNR) Biodiversity and Natural Resources (BNR) > Integrated Biosphere Futures (IBF) Biodiversity and Natural Resources (BNR) > Water Security (WAT) Young Scientists Summer Program (YSSP) |
Depositing User: | Michaela Rossini |
Date Deposited: | 15 Nov 2024 09:27 |
Last Modified: | 15 Nov 2024 09:27 |
URI: | https://pure.iiasa.ac.at/20121 |
Actions (login required)
View Item |