Both climate forcing and climate sensitivity persist as stubborn uncertainties limiting the extent to which climate models can provide actionable scientific scenarios for climate change. A key, explicit control on cloud-aerosol interactions, the largest uncertainty in climate forcing, is the vertical velocity of cloud-scale updrafts. Model-based studies of climate sensitivity indicate that convective entrainment, which is closely related to updraft speeds, is an important control on climate sensitivity. Updraft vertical velocities also drive many physical processes essential to numerical weather prediction. Vertical velocities and their role in atmospheric physical processes have been given very limited attention in models for climate and n...
Precipitation processes in convective storms are potentially a major regulator of cloud feedback. An...
Previously observed twice-Clausius–Clapeyron (2CC) scaling for extreme precipitation at hourly time ...
Humanity has a primordial fascination with clouds. The meteorological and hydrological communities h...
Both climate forcing and climate sensitivity persist as stubborn uncertainties limiting the extent t...
Abstract. Both climate forcing and climate sensitivity persist as stubborn uncertainties limiting th...
Both climate forcing and climate sensitivity persist as stubborn uncertainties limiting the extent ...
We investigate the hypothesis that invigoration of convective updrafts under warming conditions cont...
Better representation of cloud–aerosol interactions is crucial for an improved understanding of natu...
International audienceWe analyze three cloud-resolving model simulations of a strong convective even...
The scaling of updraught velocities over a wide range of surface temperatures is investigated in sim...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Earth, Atmospheric, and Planeta...
Precipitation processes in convective storms are potentially a major regulator of cloud feedback. An...
Ó 2020 American Meteorological Society. Tropical precipitation extremes are expected to strengthen w...
International audienceWe use estimates of mesoscale vertical velocity and collocated cloud measureme...
Precipitation processes in convective storms are potentially a major regulator of cloud feedback. An...
Previously observed twice-Clausius–Clapeyron (2CC) scaling for extreme precipitation at hourly time ...
Humanity has a primordial fascination with clouds. The meteorological and hydrological communities h...
Both climate forcing and climate sensitivity persist as stubborn uncertainties limiting the extent t...
Abstract. Both climate forcing and climate sensitivity persist as stubborn uncertainties limiting th...
Both climate forcing and climate sensitivity persist as stubborn uncertainties limiting the extent ...
We investigate the hypothesis that invigoration of convective updrafts under warming conditions cont...
Better representation of cloud–aerosol interactions is crucial for an improved understanding of natu...
International audienceWe analyze three cloud-resolving model simulations of a strong convective even...
The scaling of updraught velocities over a wide range of surface temperatures is investigated in sim...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Earth, Atmospheric, and Planeta...
Precipitation processes in convective storms are potentially a major regulator of cloud feedback. An...
Ó 2020 American Meteorological Society. Tropical precipitation extremes are expected to strengthen w...
International audienceWe use estimates of mesoscale vertical velocity and collocated cloud measureme...
Precipitation processes in convective storms are potentially a major regulator of cloud feedback. An...
Previously observed twice-Clausius–Clapeyron (2CC) scaling for extreme precipitation at hourly time ...
Humanity has a primordial fascination with clouds. The meteorological and hydrological communities h...