The climate of High Mountain Asia (HMA) has changed in recent decades. While the temperature is consistently increasing at a higher rate than the global warming rate, precipitation changes are inconsistent, with substantial temporal and spatial variation. Climate warming will have enormous consequences for hydroclimatic extremes. For the higher altitudes of the HMA, which are a significant source of water for the large rivers in Asia, often trends are calculated using a limited number of in situ observations mainly observed in valleys. This study explores the changes in mean, extreme, and compound-extreme climate variables and their seasonality along the full altitudinal range in HMA using daily ERA5 reanalysis data (1979–2018). Our results...
The Hindu Kush-Himalayan (HKH) region epitomizes a geographic region where cryospheric processes cou...
Spatial and temporal variability in precipitation has been dramatically changed due to climate varia...
Understanding changes in background dryness over land is key information for adapting to climate cha...
The climate of High Mountain Asia (HMA) has changed in recent decades. While the temperature is cons...
Natural disasters in High Mountain Asia (HMA) are largely induced by precipitation and temperatures ...
Changes in climate can be favorable as well as detrimental for natural and anthropogenic systems. Te...
In Asia, water resources largely depend on water generated in the mountainous upstream parts of seve...
The hydrological response to climate change in mountainous basins manifests itself at varying spatia...
Mountain ranges in High Mountain Asia (HMA) are the highest on Earth. Combined with monsoon-dominate...
Climate change over High Mountain Asia (HMA, including the Tibetan Plateau) is investigated over the...
High-quality temperature estimates with good spatio-temporal coverage are necessary for completely u...
The hydroclimate over Asia has undergone important changes over the Holocene with spatially asynchro...
Asia’s High Mountains (AHM) are at particular risk from shifting climate, as much of the region is h...
©2017. American Geophysical UnionHigh Asia has experienced strong environmental changes in recent de...
It has been clearly established that the climate of Asia is significantly affected by high-elevation...
The Hindu Kush-Himalayan (HKH) region epitomizes a geographic region where cryospheric processes cou...
Spatial and temporal variability in precipitation has been dramatically changed due to climate varia...
Understanding changes in background dryness over land is key information for adapting to climate cha...
The climate of High Mountain Asia (HMA) has changed in recent decades. While the temperature is cons...
Natural disasters in High Mountain Asia (HMA) are largely induced by precipitation and temperatures ...
Changes in climate can be favorable as well as detrimental for natural and anthropogenic systems. Te...
In Asia, water resources largely depend on water generated in the mountainous upstream parts of seve...
The hydrological response to climate change in mountainous basins manifests itself at varying spatia...
Mountain ranges in High Mountain Asia (HMA) are the highest on Earth. Combined with monsoon-dominate...
Climate change over High Mountain Asia (HMA, including the Tibetan Plateau) is investigated over the...
High-quality temperature estimates with good spatio-temporal coverage are necessary for completely u...
The hydroclimate over Asia has undergone important changes over the Holocene with spatially asynchro...
Asia’s High Mountains (AHM) are at particular risk from shifting climate, as much of the region is h...
©2017. American Geophysical UnionHigh Asia has experienced strong environmental changes in recent de...
It has been clearly established that the climate of Asia is significantly affected by high-elevation...
The Hindu Kush-Himalayan (HKH) region epitomizes a geographic region where cryospheric processes cou...
Spatial and temporal variability in precipitation has been dramatically changed due to climate varia...
Understanding changes in background dryness over land is key information for adapting to climate cha...