Water vapour is the most effective atmospheric greenhouse gas in terms of warming the atmosphere. Water vapour can magnify the temperature increase that CO2 would cause alone by 2-3 times. As such, it is critical to monitor changes in water vapour abundance to better understand its role in atmospheric change. I have used 10 years of lidar and radiosonde measurements from the MeteoSwiss research station in Payerne, Switzerland to calibrate the lidar, improve its water vapour retrievals, and finally calculate a lidar water vapour climatology and trend analysis. Calculating trends with a lidar requires rigorous calibration. Therefore, my first thesis project was to improve the lidar calibrations by using the best radiosonde product available, ...
Water vapor is a fundamental constituent of the atmosphere and is the most abundant green house gas ...
Water vapour is one of the most important greenhouse gases, since it causes about two third of the n...
The Development of Methodologies for Water Vapour Measurement (DEMEVAP) project aims at assessing an...
We revised the calibration of a water vapor Raman lidar by co-located radiosoundings for a site in t...
International audienceA Raman water vapor lidar has been developed at the Haute-Provence Observatory...
Water vapor plays a crucially important role in many atmospheric processes. However, it is poorly ch...
With only 50% downtime from 2007-2016, the RALMO lidar in Payerne, Switzerland, has one of the large...
We revised the calibration of a water vapor Raman lidar by co-located radiosoundings for a site in t...
In this paper, we present a method to derive water vapour profiles from Raman lidar measurements cal...
The Raman Lidar for Meteorological Observations (RALMO) was installed at the MeteoSwiss Regional Cen...
The MOHAVE-2009 campaign brought together diverse instrumentation for measuring atmospheric water va...
In this paper, we outline an iterative method to calibrate the water vapour mixing ratio profiles re...
In this paper, we present a method to derive water vapour profiles from Raman lidar measurements cal...
International audienceWater vapour has been measured from the International Scientific Station Jungf...
A high-power Raman lidar system has been installed at the high-altitude research station Schneeferne...
Water vapor is a fundamental constituent of the atmosphere and is the most abundant green house gas ...
Water vapour is one of the most important greenhouse gases, since it causes about two third of the n...
The Development of Methodologies for Water Vapour Measurement (DEMEVAP) project aims at assessing an...
We revised the calibration of a water vapor Raman lidar by co-located radiosoundings for a site in t...
International audienceA Raman water vapor lidar has been developed at the Haute-Provence Observatory...
Water vapor plays a crucially important role in many atmospheric processes. However, it is poorly ch...
With only 50% downtime from 2007-2016, the RALMO lidar in Payerne, Switzerland, has one of the large...
We revised the calibration of a water vapor Raman lidar by co-located radiosoundings for a site in t...
In this paper, we present a method to derive water vapour profiles from Raman lidar measurements cal...
The Raman Lidar for Meteorological Observations (RALMO) was installed at the MeteoSwiss Regional Cen...
The MOHAVE-2009 campaign brought together diverse instrumentation for measuring atmospheric water va...
In this paper, we outline an iterative method to calibrate the water vapour mixing ratio profiles re...
In this paper, we present a method to derive water vapour profiles from Raman lidar measurements cal...
International audienceWater vapour has been measured from the International Scientific Station Jungf...
A high-power Raman lidar system has been installed at the high-altitude research station Schneeferne...
Water vapor is a fundamental constituent of the atmosphere and is the most abundant green house gas ...
Water vapour is one of the most important greenhouse gases, since it causes about two third of the n...
The Development of Methodologies for Water Vapour Measurement (DEMEVAP) project aims at assessing an...