In this paper, we present a method to derive water vapour profiles from Raman lidar measurements calibrated by the integrated water vapour (IWV) from a collocated microwave radiometer during the intense observation campaign HOPE in the frame of the HD(CP)2 initiative. The simultaneous observation of a microwave radiometer and a Raman lidar allowed an operational and continuous measurement of water vapour profiles also during cloudy conditions. The calibration method provides results which are in a good agreement with conventional methods based on radiosondes. The calibration factor derived from the proposed IWV method is very stable with a relative uncertainty of 5 %. This stability allows for the calibration of the lidar even in the presen...
International audienceA Raman water vapor lidar has been developed at the Haute-Provence Observatory...
The Development of Methodologies for Water Vapour Measurement (DEMEVAP) project aims at assessing an...
This is a postprint (author final draft) version of article that has been accepted for publication. ...
Abstract. In this paper, we present a method to derive water vapour profiles from Raman lidar measu...
In this paper, we present a method to derive water vapour profiles from Raman lidar measurements cal...
In this paper, we present a method to retrieve continuous water vapor profiles from a combination of...
In this paper, we present a method to retrieve continuous water vapor profiles from a combination of...
In this work, a two-step algorithm to obtain water vapour profiles from a combination of Raman lidar...
Water vapor plays a crucially important role in many atmospheric processes. However, it is poorly ch...
In this paper, we outline an iterative method to calibrate the water vapour mixing ratio profiles re...
We revised the calibration of a water vapor Raman lidar by co-located radiosoundings for a site in t...
We present a practical method to continuously calibrate Raman lidar observations of water vapor mix...
We revised the calibration of a water vapor Raman lidar by co-located radiosoundings for a site in t...
Continuous monitoring of atmospheric humidity profiles is important for many applications, e.g., ass...
International audienceA Raman water vapor lidar has been developed at the Haute-Provence Observatory...
The Development of Methodologies for Water Vapour Measurement (DEMEVAP) project aims at assessing an...
This is a postprint (author final draft) version of article that has been accepted for publication. ...
Abstract. In this paper, we present a method to derive water vapour profiles from Raman lidar measu...
In this paper, we present a method to derive water vapour profiles from Raman lidar measurements cal...
In this paper, we present a method to retrieve continuous water vapor profiles from a combination of...
In this paper, we present a method to retrieve continuous water vapor profiles from a combination of...
In this work, a two-step algorithm to obtain water vapour profiles from a combination of Raman lidar...
Water vapor plays a crucially important role in many atmospheric processes. However, it is poorly ch...
In this paper, we outline an iterative method to calibrate the water vapour mixing ratio profiles re...
We revised the calibration of a water vapor Raman lidar by co-located radiosoundings for a site in t...
We present a practical method to continuously calibrate Raman lidar observations of water vapor mix...
We revised the calibration of a water vapor Raman lidar by co-located radiosoundings for a site in t...
Continuous monitoring of atmospheric humidity profiles is important for many applications, e.g., ass...
International audienceA Raman water vapor lidar has been developed at the Haute-Provence Observatory...
The Development of Methodologies for Water Vapour Measurement (DEMEVAP) project aims at assessing an...
This is a postprint (author final draft) version of article that has been accepted for publication. ...