The spatio-temporal variability of integrated water vapour (IWV) on small scales of less than 10 km and hours is assessed with data from the 2 months of the High Definition Clouds and Precipitation for advancing Climate Prediction (HD(CP)2) Observational Prototype Experiment (HOPE). The statistical intercomparison of the unique set of observations during HOPE (microwave radiometer (MWR), Global Positioning System (GPS), sun photometer, radiosondes, Raman lidar, infrared and near-infrared Moderate Resolution Imaging Spectroradiometer (MODIS) on the satellites Aqua and Terra) measuring close together reveals a good agreement in terms of random differences (standard deviation 1 kgm2) and correlation coefficient (0:98). The exceptio...
The TROpospheric WAter RAdiometer (TROWARA) continuously measures integrated water vapour (IWV) with...
This study investigates the means, variability, and trends in integrated water vapour (IWV) from tw...
The remote sensing of total column water vapour (TCWV) from polar orbiting, sun-synchronous satellit...
The spatio-temporal variability of integrated water vapour (IWV) on small scales of less than 10 km...
Since water vapour plays a key role in several atmospheric processes on various scales including clo...
Water vapor concentration structures in the atmosphere are well approximated horizontally by Gaussia...
Water vapor is the most important greenhouse gas and its spatiotemporal variability strongly exceeds...
Water vapor, a minor constituent of the earth’s atmosphere, plays a major role in the radiation budg...
Water vapor is the most important greenhouse gas and its spatio-temporal variability strongly exceed...
Tropospheric water vapour plays an important role in thermodynamic and radiative processes which ha...
Ground-based GPS measurements can provide independent data for the assessment of climate models. We ...
International audienceA high-quality, consistent, global, long-term dataset of integrated water vapo...
The keynote talk summarized five years of work simulating observed mesoscale convective systems with...
The TROpospheric WAter RAdiometer (TROWARA) continuously measures integrated water vapour (IWV) with...
This study investigates the means, variability, and trends in integrated water vapour (IWV) from tw...
The remote sensing of total column water vapour (TCWV) from polar orbiting, sun-synchronous satellit...
The spatio-temporal variability of integrated water vapour (IWV) on small scales of less than 10 km...
Since water vapour plays a key role in several atmospheric processes on various scales including clo...
Water vapor concentration structures in the atmosphere are well approximated horizontally by Gaussia...
Water vapor is the most important greenhouse gas and its spatiotemporal variability strongly exceeds...
Water vapor, a minor constituent of the earth’s atmosphere, plays a major role in the radiation budg...
Water vapor is the most important greenhouse gas and its spatio-temporal variability strongly exceed...
Tropospheric water vapour plays an important role in thermodynamic and radiative processes which ha...
Ground-based GPS measurements can provide independent data for the assessment of climate models. We ...
International audienceA high-quality, consistent, global, long-term dataset of integrated water vapo...
The keynote talk summarized five years of work simulating observed mesoscale convective systems with...
The TROpospheric WAter RAdiometer (TROWARA) continuously measures integrated water vapour (IWV) with...
This study investigates the means, variability, and trends in integrated water vapour (IWV) from tw...
The remote sensing of total column water vapour (TCWV) from polar orbiting, sun-synchronous satellit...