Lidar has unique advantages in temporal and spatial resolution to measure the atmospheric mixing layer height (MLH), which is important for analyzing atmospheric phenomena. However, long-term MLH information over several years, which has important significance in air quality and climate studies, is seldom obtained from lidar data due to the scarcity of long-running lidar observations. In this paper, we retrieve and analyze daytime MLH from a data set of a lidar that operated continuously over 6.5 years at Yuen Long, Hong Kong. A new algorithm has been developed for consistently retrieving MLH from this large data set, handling all possible weather conditions and aerosol layer structures. We analyze the diurnal, seasonal and inter-annual var...
The atmospheric boundary layer (ABL), an atmospheric region near the Earth’s surface, is affected by...
Given the rapid change in clouds over land, radiosonde observations have limitations when it comes t...
Continuous lidar observation was performed in Guangzhou, China, in the Pearl River Delta (PRD) obser...
Lidar has unique advantages in temporal and spatial resolution to measure the atmospheric mixing lay...
International audienceThe atmospheric mixing layer height (MLH) determines the space in which pollut...
The planetary boundary layer height (PBLH) is a very important parameter in the atmosphere, because ...
Aerosol vertical distribution is an important piece of information to improve aerosol retrieval from...
Due to a reliance on solar radiation, the aerosol optical depth (AOD) is observed only during the da...
Mixing layer height (MLH) is retrieved at an urban site in Seoul, Korea, from 2-year collocated remo...
Lidar observations to study the nocturnal boundary layer in the atmosphere were made on selected eve...
The planetary boundary layer (PBL) height plays important roles in modulating the local air pollutio...
This study analyzes seasonal characteristics and long-term variations in aerosol optical parameters ...
Due to the limited spatial coverage of surface PM2.5 monitoring sites, satellite AOD (aerosol optica...
Mixing layer height (MLH) is a crucial parameter for air quality modelling that is still not routine...
The planetary boundary layer (PBL) is an atmospheric region near the Earth’s surface. It is signific...
The atmospheric boundary layer (ABL), an atmospheric region near the Earth’s surface, is affected by...
Given the rapid change in clouds over land, radiosonde observations have limitations when it comes t...
Continuous lidar observation was performed in Guangzhou, China, in the Pearl River Delta (PRD) obser...
Lidar has unique advantages in temporal and spatial resolution to measure the atmospheric mixing lay...
International audienceThe atmospheric mixing layer height (MLH) determines the space in which pollut...
The planetary boundary layer height (PBLH) is a very important parameter in the atmosphere, because ...
Aerosol vertical distribution is an important piece of information to improve aerosol retrieval from...
Due to a reliance on solar radiation, the aerosol optical depth (AOD) is observed only during the da...
Mixing layer height (MLH) is retrieved at an urban site in Seoul, Korea, from 2-year collocated remo...
Lidar observations to study the nocturnal boundary layer in the atmosphere were made on selected eve...
The planetary boundary layer (PBL) height plays important roles in modulating the local air pollutio...
This study analyzes seasonal characteristics and long-term variations in aerosol optical parameters ...
Due to the limited spatial coverage of surface PM2.5 monitoring sites, satellite AOD (aerosol optica...
Mixing layer height (MLH) is a crucial parameter for air quality modelling that is still not routine...
The planetary boundary layer (PBL) is an atmospheric region near the Earth’s surface. It is signific...
The atmospheric boundary layer (ABL), an atmospheric region near the Earth’s surface, is affected by...
Given the rapid change in clouds over land, radiosonde observations have limitations when it comes t...
Continuous lidar observation was performed in Guangzhou, China, in the Pearl River Delta (PRD) obser...