This paper describes advances in ground-based thermodynamic profiling of the lower troposphere through sensor synergy. The well-documented integrated profiling technique (IPT), which uses a microwave profiler, a cloud radar, and a ceilometer to simultaneously retrieve vertical profiles of temperature, humidity, and liquid water content (LWC) of nonprecipitating clouds, is further developed toward an enhanced performance in the boundary layer and lower troposphere. For a more accurate temperature profile, this is accomplished by including an elevation scanning measurement modus of the microwave profiler. Height-dependent RMS accuracies of temperature (humidity) ranging from 0.3 to 0.9 K (0.5–0.8 g m−3) in the boundary layer are derived from ...
Despite the importance of radar reflectivity (Z) measurements in the retrieval of liquid water cloud...
Thermodynamic atmospheric profiles have been retrieved from ground-based microwave radiometers durin...
Microwave radiometry is a suitable technique to measure atmospheric temperature profiles with high ...
A deeper understanding of how clouds will respond to a warming climate is one of the outstanding cha...
A review of remote sensing technology for lower tropospheric thermodynamic (TD) profiling is presen...
International audienceA new generation of cloud radars, with the ability to make observations close ...
An Atmospheric Sounding Campaign within the EPS programme in support of the validation of the Infrar...
International audienceCloud radars are capable of providing continuous high-resolution observations ...
A deeper understanding of how clouds will respond to a warming climate is one of the outstanding cha...
International audienceCloud radars are capable of providing continuous high-resolution observations ...
Thermodynamic profiles in the planetary boundary layer (PBL) are important observations for a range ...
A method for combining ground-based passive microwave radiometer retrievals of integrated liquid wat...
International audienceThe fog lifecyle and more especially formation and dissipation times are still...
Despite the importance of radar reflectivity (Z) measurements in the retrieval of liquid water cloud...
Thermodynamic atmospheric profiles have been retrieved from ground-based microwave radiometers durin...
Microwave radiometry is a suitable technique to measure atmospheric temperature profiles with high ...
A deeper understanding of how clouds will respond to a warming climate is one of the outstanding cha...
A review of remote sensing technology for lower tropospheric thermodynamic (TD) profiling is presen...
International audienceA new generation of cloud radars, with the ability to make observations close ...
An Atmospheric Sounding Campaign within the EPS programme in support of the validation of the Infrar...
International audienceCloud radars are capable of providing continuous high-resolution observations ...
A deeper understanding of how clouds will respond to a warming climate is one of the outstanding cha...
International audienceCloud radars are capable of providing continuous high-resolution observations ...
Thermodynamic profiles in the planetary boundary layer (PBL) are important observations for a range ...
A method for combining ground-based passive microwave radiometer retrievals of integrated liquid wat...
International audienceThe fog lifecyle and more especially formation and dissipation times are still...
Despite the importance of radar reflectivity (Z) measurements in the retrieval of liquid water cloud...
Thermodynamic atmospheric profiles have been retrieved from ground-based microwave radiometers durin...
Microwave radiometry is a suitable technique to measure atmospheric temperature profiles with high ...