Abstract. Continuous lidar observations of the top height of the boundary layer (BL top) have been performed at Leipzig (51.3 ◦ N, 12.4 ◦ E), Germany, since August 2005. The results of measurements taken with a compact, automated Raman li-dar over a one-year period (February 2006 to January 2007) are presented. Main goals of the study are (a) to demon-strate that BL top monitoring with lidar throughout the year is possible, (b) to present the required data analysis method that permits an automated, robust retrieval of BL top at all weather situations, and (c) to use this opportunity to compare the lidar-derived BL top data with respective BL tops hourly predicted by the regional weather forecast model COSMO. Four different lidar methods for...
International audienceA detailed understanding of atmospheric boundary layer (ABL) processes is key ...
The planetary boundary layer includes the portion of the atmosphere which is directly influenced by...
The planetary boundary layer includes the portion of the atmosphere which is directly influenced by ...
Continuous lidar observations of the top height of the boundary layer (BL top) have been performed a...
This paper reports results from an inter-comparison effort involving different sensors and models us...
The depth of the planetary boundary-layer (PBL) is defined as the height of the inversion level sepa...
Determining the height of the planetary boundary layer (PBL) is of crucial importance as it is a key...
Accurate estimation of the atmospheric boundary layer height (ABLH) is critically important and it m...
The Planetary Boundary Layer (PBL) includes the portion of the atmosphere which is directly influence...
The performance of six numerical methods usually used to determine the atmospheric boundary layer (A...
This work stems from the idea of improving the capability to measure the atmospheric boundary layer ...
A detailed understanding of atmospheric boundary layer (ABL) processes is key to improve forecasting...
International audienceA detailed understanding of atmospheric boundary layer (ABL) processes is key ...
The planetary boundary layer includes the portion of the atmosphere which is directly influenced by...
The planetary boundary layer includes the portion of the atmosphere which is directly influenced by ...
Continuous lidar observations of the top height of the boundary layer (BL top) have been performed a...
This paper reports results from an inter-comparison effort involving different sensors and models us...
The depth of the planetary boundary-layer (PBL) is defined as the height of the inversion level sepa...
Determining the height of the planetary boundary layer (PBL) is of crucial importance as it is a key...
Accurate estimation of the atmospheric boundary layer height (ABLH) is critically important and it m...
The Planetary Boundary Layer (PBL) includes the portion of the atmosphere which is directly influence...
The performance of six numerical methods usually used to determine the atmospheric boundary layer (A...
This work stems from the idea of improving the capability to measure the atmospheric boundary layer ...
A detailed understanding of atmospheric boundary layer (ABL) processes is key to improve forecasting...
International audienceA detailed understanding of atmospheric boundary layer (ABL) processes is key ...
The planetary boundary layer includes the portion of the atmosphere which is directly influenced by...
The planetary boundary layer includes the portion of the atmosphere which is directly influenced by ...