International audienceA Raman water vapor lidar has been developed at the Haute-Provence Observatory to study the distribution of water in the upper troposphere and its long-term evolution. Some investigations have been proposed and described to ensure a pertinent monitoring of water vapor in the upper troposphere. A new method to take into account the geophysical variability for time integration processes has been developed based on the stationarity of water vapor. Successive measurements, considered as independent, have been used to retrieve H2O profiles that were recorded during the same nighttimes over a few hours. Various calibration methods, including zenith clear-sky observation, standard meteorological radiosondes, and total water v...
Accurate measurements of the vertical profiles of water vapour are of paramount importance for most ...
We revised the calibration of a water vapor Raman lidar by co-located radiosoundings for a site in t...
Obtaining vertical profiles of tropospheric water vapor provides critically important information to...
International audienceA Raman water vapor lidar has been developed at the Haute-Provence Observatory...
International audienceThe Maïdo high-altitude observatory located in Reunion Island (21°S, 55°E) is ...
International audienceThe Maïdo high-altitude observatory located in Reunion Island (21 • S, 55.5 • ...
International audienceA ground based Rayleigh lidar has provided continuous observations of troposph...
A new lidar system devoted to tropospheric and lower stratospheric water vapor measurements has been...
Water vapour is the most effective atmospheric greenhouse gas in terms of warming the atmosphere. Wa...
We revised the calibration of a water vapor Raman lidar by co-located radiosoundings for a site in t...
The MOHAVE-2009 campaign brought together diverse instrumentation for measuring atmospheric water va...
The Maïdo high-altitude observatory located in Reunion Island (21°S, 55°E) is equipped with an innov...
The Development of Methodologies for Water Vapour Measurement (DEMEVAP) project aims at assessing an...
Accurate measurements of the vertical profiles of water vapour are of paramount importance for most ...
We revised the calibration of a water vapor Raman lidar by co-located radiosoundings for a site in t...
Obtaining vertical profiles of tropospheric water vapor provides critically important information to...
International audienceA Raman water vapor lidar has been developed at the Haute-Provence Observatory...
International audienceThe Maïdo high-altitude observatory located in Reunion Island (21°S, 55°E) is ...
International audienceThe Maïdo high-altitude observatory located in Reunion Island (21 • S, 55.5 • ...
International audienceA ground based Rayleigh lidar has provided continuous observations of troposph...
A new lidar system devoted to tropospheric and lower stratospheric water vapor measurements has been...
Water vapour is the most effective atmospheric greenhouse gas in terms of warming the atmosphere. Wa...
We revised the calibration of a water vapor Raman lidar by co-located radiosoundings for a site in t...
The MOHAVE-2009 campaign brought together diverse instrumentation for measuring atmospheric water va...
The Maïdo high-altitude observatory located in Reunion Island (21°S, 55°E) is equipped with an innov...
The Development of Methodologies for Water Vapour Measurement (DEMEVAP) project aims at assessing an...
Accurate measurements of the vertical profiles of water vapour are of paramount importance for most ...
We revised the calibration of a water vapor Raman lidar by co-located radiosoundings for a site in t...
Obtaining vertical profiles of tropospheric water vapor provides critically important information to...