Numerical weather forecast systems like the ECMWF IFS (European Centre for Medium-Range Weather Forecasts – Integrated Forecasting System) are known to be affected by a moist bias in the extratropical lowermost stratosphere (LMS) which results in a systematic cold bias there. We use high-spatial-resolution water vapor measurements by the airborne infrared limb-imager GLORIA (Gimballed Limb Observer for Radiance Imaging of the Atmosphere) during the PGS (POLSTRACC/GW-LCYCLE-II/SALSA) campaign to study the LMS moist bias in ECMWF analyses and 12 h forecasts from January to March 2016. Thereby, we exploit the two-dimensional observational capabilities of GLORIA, when compared to in situ observations, and the higher vertical and horizontal reso...
It has been shown previously that one member of the Met Office Hadley Centre single-parameter pertur...
Accurate measurement of water vapor in the climate-sensitive region near the tropopause is very cha...
Future increases in stratospheric water vapour risk amplifying climate change and slowing down the r...
Numerical weather forecast systems like the ECMWF IFS (European Centre for Medium-Range Weather Fore...
Numerical weather prediction (NWP) models are known to possess a distinct moist bias in the midlatit...
A comprehensive data set of airborne lidar water vapor profiles is compared with ERA5 reanalyses for...
Current NWP analyses and reanalyses are known to possess a moist bias in the lower stratosphere of t...
The stratosphere can be a source of predictability for surface weather on timescales of several week...
International audienceThree extended airborne Differential Absorption Lidar (DIAL) sections of tropo...
Evaluating the representation of processes controlling tropical and subtropical tropospheric relativ...
The mechanisms responsible for the extreme dryness of the stratosphere have been debated for decades...
We present an intercomparison of the airborne water vapor measurements during the ML-CIRRUS mission....
The European Centre for Medium-Range Weather Forecasts (ECMWF) provides global analyses of atmospher...
Water vapour and ozone are important for the thermal and radiative balance of the upper troposphere ...
International audienceAirborne Differential Absorption Lidar (DIAL) observations of tropospheric wat...
It has been shown previously that one member of the Met Office Hadley Centre single-parameter pertur...
Accurate measurement of water vapor in the climate-sensitive region near the tropopause is very cha...
Future increases in stratospheric water vapour risk amplifying climate change and slowing down the r...
Numerical weather forecast systems like the ECMWF IFS (European Centre for Medium-Range Weather Fore...
Numerical weather prediction (NWP) models are known to possess a distinct moist bias in the midlatit...
A comprehensive data set of airborne lidar water vapor profiles is compared with ERA5 reanalyses for...
Current NWP analyses and reanalyses are known to possess a moist bias in the lower stratosphere of t...
The stratosphere can be a source of predictability for surface weather on timescales of several week...
International audienceThree extended airborne Differential Absorption Lidar (DIAL) sections of tropo...
Evaluating the representation of processes controlling tropical and subtropical tropospheric relativ...
The mechanisms responsible for the extreme dryness of the stratosphere have been debated for decades...
We present an intercomparison of the airborne water vapor measurements during the ML-CIRRUS mission....
The European Centre for Medium-Range Weather Forecasts (ECMWF) provides global analyses of atmospher...
Water vapour and ozone are important for the thermal and radiative balance of the upper troposphere ...
International audienceAirborne Differential Absorption Lidar (DIAL) observations of tropospheric wat...
It has been shown previously that one member of the Met Office Hadley Centre single-parameter pertur...
Accurate measurement of water vapor in the climate-sensitive region near the tropopause is very cha...
Future increases in stratospheric water vapour risk amplifying climate change and slowing down the r...