This article investigates projected changes in temperature and water cycle extremes at 1.5°C of global warming, and highlights the role of land processes and land-use changes (LUCs) for these projections. We provide new comparisons of changes in climate at 1.5°C versus 2°C based on empirical sampling analyses of transient simulations versus simulations from the ‘Half a degree Additional warming, Prognosis and Projected Impacts’ (HAPPI) multi-model experiment. The two approaches yield similar overall results regarding changes in climate extremes on land, and reveal a substantial difference in the occurrence of regional extremes at 1.5°C versus 2°C. Land processes mediated through soil moisture feedbacks and land-use forcing play a major role...
Earth’s Climate has always affected mankind. On the other hand, humans started to affect Earth’s cli...
We examine how soil moisture variability and trends affect the simulation of temperature and precipi...
We projected changes in weather extremes, hydrological impacts and vulnerability to food insecurity ...
This article investigates projected changes in temperature and water cycle extremes at 1.5°C of glob...
This article investigates projected changes in temperature and water cycle extremes at 1.5°C of glob...
This article investigates projected changes in temperature and water cycle extremes at 1.5°C of glob...
This article investigates projected changes in temperature and water cycle extremes at 1.5°C of glob...
The impacts of land use have been shown to have considerable influence on regional climate. With the...
The impacts of land use have been shown to have considerable influence on regional climate. With the...
The impacts of land use have been shown to have considerable influence on regional climate. With the...
The impacts of land use have been shown to have considerable influence on regional climate. With the...
This is the final version. Available on open access from the Royal Society via the DOI in this recor...
The impact of historical land use induced land cover change (LULCC) on regional-scale climate extrem...
In the 2018 spring and summer, record-breaking temperatures were observed in Switzerland and many co...
This is the final version of the article. Available from the American Meteorological Society via the...
Earth’s Climate has always affected mankind. On the other hand, humans started to affect Earth’s cli...
We examine how soil moisture variability and trends affect the simulation of temperature and precipi...
We projected changes in weather extremes, hydrological impacts and vulnerability to food insecurity ...
This article investigates projected changes in temperature and water cycle extremes at 1.5°C of glob...
This article investigates projected changes in temperature and water cycle extremes at 1.5°C of glob...
This article investigates projected changes in temperature and water cycle extremes at 1.5°C of glob...
This article investigates projected changes in temperature and water cycle extremes at 1.5°C of glob...
The impacts of land use have been shown to have considerable influence on regional climate. With the...
The impacts of land use have been shown to have considerable influence on regional climate. With the...
The impacts of land use have been shown to have considerable influence on regional climate. With the...
The impacts of land use have been shown to have considerable influence on regional climate. With the...
This is the final version. Available on open access from the Royal Society via the DOI in this recor...
The impact of historical land use induced land cover change (LULCC) on regional-scale climate extrem...
In the 2018 spring and summer, record-breaking temperatures were observed in Switzerland and many co...
This is the final version of the article. Available from the American Meteorological Society via the...
Earth’s Climate has always affected mankind. On the other hand, humans started to affect Earth’s cli...
We examine how soil moisture variability and trends affect the simulation of temperature and precipi...
We projected changes in weather extremes, hydrological impacts and vulnerability to food insecurity ...