©2019. The Authors. Accelerating mountain glacier recession in a warming climate threatens the sustainability of mountain water resources. The extent to which groundwater will provide resilience to these water resources is unknown, in part due to a lack of data and poorly understood interactions between groundwater and surface water. Here we address this knowledge gap by linking climate, glaciers, surface water, and groundwater into an integrated model of the Shullcas Watershed, Peru, in the tropical Andes, the region experiencing the most rapid mountain-glacier retreat on Earth. For a range of climate scenarios, our model projects that glaciers will disappear by 2100. The loss of glacial meltwater will be buffered by relatively consistent ...
AbstractWater from glaciers is crucial for the Peruvian hydropower production. Hence, we investigate...
Water resources in high mountains play a fundamental role for societies and eco-systems both locally...
Water from glaciers is crucial for the Peruvian hydropower production. Hence, we investigate the gla...
Mountain regions provide a disproportionately large amount of the world’s fresh water resources. In...
The retreat of glaciers in the tropics will have a significant impact on water resources. In order t...
Climate change is forcing dramatic glacier mass loss in the Cordillera Blanca, Peru, resulting in hy...
Projections of future water shortages in the world’s glaciated mountain ranges have grown increasing...
Water resources in high mountains play a fundamental role for societies and ecosystems in the region...
With fresh water becoming more valuable of a resource, the protection of the sources is critical. Th...
The retreat of the glaciers of Peru's Cordillera Blanca is a potential threat to the human, ecologic...
Accelerated glaciers melt is expected to affect negatively the water resources of mountain regions a...
Almost all of the world's glaciers in the tropical latitudes are located in the Central Andes (Peru,...
Glaciers in the tropical Andes have been retreating for the past several decades, leading to a tempo...
Water resources are being impacted by anthropogenic climate change worldwide, the nature ...
Glaciers in the tropical Andes have been retreating for the past several decades, leading to a tempo...
AbstractWater from glaciers is crucial for the Peruvian hydropower production. Hence, we investigate...
Water resources in high mountains play a fundamental role for societies and eco-systems both locally...
Water from glaciers is crucial for the Peruvian hydropower production. Hence, we investigate the gla...
Mountain regions provide a disproportionately large amount of the world’s fresh water resources. In...
The retreat of glaciers in the tropics will have a significant impact on water resources. In order t...
Climate change is forcing dramatic glacier mass loss in the Cordillera Blanca, Peru, resulting in hy...
Projections of future water shortages in the world’s glaciated mountain ranges have grown increasing...
Water resources in high mountains play a fundamental role for societies and ecosystems in the region...
With fresh water becoming more valuable of a resource, the protection of the sources is critical. Th...
The retreat of the glaciers of Peru's Cordillera Blanca is a potential threat to the human, ecologic...
Accelerated glaciers melt is expected to affect negatively the water resources of mountain regions a...
Almost all of the world's glaciers in the tropical latitudes are located in the Central Andes (Peru,...
Glaciers in the tropical Andes have been retreating for the past several decades, leading to a tempo...
Water resources are being impacted by anthropogenic climate change worldwide, the nature ...
Glaciers in the tropical Andes have been retreating for the past several decades, leading to a tempo...
AbstractWater from glaciers is crucial for the Peruvian hydropower production. Hence, we investigate...
Water resources in high mountains play a fundamental role for societies and eco-systems both locally...
Water from glaciers is crucial for the Peruvian hydropower production. Hence, we investigate the gla...