Does the Hook Structure Constrain Future Flood Intensification Under Anthropogenic Climate Warming?
Water Resources Research 57:2 (2021)
Abstract:
Atmospheric moisture holding capacity increases with temperature by about 7% per °C according to the Clausius-Clapeyron relationship. Thermodynamically then, precipitation intensity should exponentially intensify and thus worsen flood conditions as the climate warms. However, regional and global analyses often report a nonmonotonic (hook) scaling of precipitation and runoff, in which extremes strengthen with rising temperature up to a maximum or peak point (TObserved rainfall changes in the past century (19012019) over the wettest place on Earth
Environmental Research Letters IOP Publishing 16:2 (2021) 024018
Separating the Indian and Pacific Ocean Impacts on the Euro-Atlantic Response to ENSO and Its Transition from Early to Late Winter
Journal of Climate American Meteorological Society 34:4 (2021) 1531-1548
The Role of an Indian Ocean Heating Dipole in the ENSO Teleconnection to the North Atlantic European Region in Early Winter during the Twentieth Century in Reanalysis and CMIP5 Simulations
Journal of Climate American Meteorological Society 34:3 (2021) 1047-1060
Year-round impact of winter sea ice thickness observations on seasonal forecasts
The Cryosphere Copernicus Publications 15:1 (2021) 325-344