Son H Kim
Biographic Data
| ID | 6928932 |
|---|---|
| NAME | Son H Kim |
| GIVEN NAMES | Son H |
| FAMILY NAME | Kim |
| SIGNATURE | KIM S H |
| AFFILIATIONS | Joint Global Change Research Institute |
| ORCID | 0000-0001-5195-489X |
| VERIFIED | Yes |
| TOTAL WORKS | 5 |
| TOTAL CITATIONS | 1 |
| AUTHOR COUNT | 5 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2018 |
| LATEST PUBLICATION YEAR | 2024 |
| H-INDEX | 1 |
Hydropower expansion in eco-sensitive river basins under global energy-economic change
Global peak water limit of future groundwater withdrawals
Assessing the future of global energy-for-water
This study incorporates the energy demands of water abstraction, treatment, distribution, and post-use wastewater treatment into the Global Change Analysis Model, an integrated human-Earth systems model, and analyzes a range of scenarios that estimate the future evolution of this demand of energy. The study complements research on historical and future water-for-energy, and builds on bottom-up estimates of historical energy-for-water (EFW), by in…
Humans drive future water scarcity changes across all Shared Socioeconomic Pathways
Future changes in climate and socioeconomic systems will drive both the availability and use of water resources, leading to evolutions in scarcity. The contributions of both systems can be quantified individually to understand the impacts around the world, but also combined to explore how the coevolution of energy-water-land systems affects not only the driver behind water scarcity changes, but how human and climate systems interact in tandem to …
Regional responses to future, demand-driven water scarcity
This paper explores regional response strategies to potential water scarcity. Using a model of integrated human-earth system dynamics (GCAM), we test a wide range of alternate water demand scenarios to explore regional response strategies. We create a typology that categorizes countries and basins according to their responses in electricity and agriculture to potential water scarcity. Three different categories are found. First, little response i…
Regional responses to future, demand-driven water scarcity
This paper explores regional response strategies to potential water scarcity. Using a model of integrated human-earth system dynamics (GCAM), we test a wide range of alternate water demand scenarios to explore regional response strategies. We create a typology that categorizes countries and basins according to their responses in electricity and agriculture to potential water scarcity. Three different categories are found. First, little response i…
Humans drive future water scarcity changes across all Shared Socioeconomic Pathways
Future changes in climate and socioeconomic systems will drive both the availability and use of water resources, leading to evolutions in scarcity. The contributions of both systems can be quantified individually to understand the impacts around the world, but also combined to explore how the coevolution of energy-water-land systems affects not only the driver behind water scarcity changes, but how human and climate systems interact in tandem to …
Assessing the future of global energy-for-water
This study incorporates the energy demands of water abstraction, treatment, distribution, and post-use wastewater treatment into the Global Change Analysis Model, an integrated human-Earth systems model, and analyzes a range of scenarios that estimate the future evolution of this demand of energy. The study complements research on historical and future water-for-energy, and builds on bottom-up estimates of historical energy-for-water (EFW), by in…
Hydropower expansion in eco-sensitive river basins under global energy-economic change
Global peak water limit of future groundwater withdrawals
Economics (5 works) · Environmental Science (5 works) · Water-Energy-Food Nexus Studies (5 works) · Ecology (4 works) · Natural resource economics (4 works) · Water resources management and optimization (4 works) · Agriculture (3 works) · Geography (3 works) · Water resource management (3 works) · Water resources (3 works)