Abstract
Limited water availability, population growth, and climate change have resulted in freshwater crises in many countries. Jordan’s situation is emblematic, compounded by conflict-induced population shocks. Integrating knowledge across hydrology, climatology, agriculture, political science, geography, and economics, we present the Jordan Water Model, a nationwide coupled human–natural-engineered systems model that is used to evaluate Jordan’s freshwater security under climate and socioeconomic changes. The complex systems model simulates the trajectory of Jordan’s water system, representing dynamic interactions between a hierarchy of actors and the natural and engineered water environment. A multiagent modeling approach enables the quantification of impacts at the level of thousands of representative agents across sectors, allowing for the evaluation of both systemwide and distributional outcomes translated into a suite of water-security metrics (vulnerability, equity, shortage duration, and economic well-being). Model results indicate severe, potentially destabilizing, declines in freshwater security. Per capita water availability decreases by approximately 50% by the end of the century. Without intervening measures, >90% of the low-income household population experiences critical insecurity by the end of the century, receiving <40 L per capita per day. Widening disparity in freshwater use, lengthening shortage durations, and declining economic welfare are prevalent across narratives. To gain a foothold on its freshwater future, Jordan must enact a sweeping portfolio of ambitious interventions that include large-scale desalinization and comprehensive water sector reform, with model results revealing exponential improvements in water security through the coordination of supply- and demand-side measures.
Funder
National Science Foundation
SU | Stanford Woods Institute for the Environment
RCUK | Natural Environment Research Council
Deutsche Forschungsgemeinschaft
Bundesministerium für Bildung und Forschung
Publisher
Proceedings of the National Academy of Sciences
Reference50 articles.
1. New insights into the natural variability of water resources in the lower Jordan River Basin;Gunkel;Water Resour. Manag.,2011
2. R. Courcier , J. Venot , F. Molle , R. Suleiman , A. Jridi , “Historical transformations of the Lower Jordan River Basin (in Jordan): Changes in water use and projections (1950-2025)” (Comprehensive Assessment of Water Management in Agriculture Research Report 9, International Water Management Institute, Colombo, Sri Lanka, 2005).
3. Cooperation and lack thereof on management of the Yarmouk River;Haddadin;Water Int.,2009
4. Impact of the Syrian refugee crisis on land use and transboundary freshwater resources
5. N. Avisse , “Quantitative analysis of non-cooperative transboundary river basins,” Dissertation, Universite Laval, Quebec, Canada (2018).
Cited by
78 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献