In this paper, data from spaceborne radar, lidar and infrared radiometers on the “A-Train” of satellites are combined in a variational algorithm to retrieve ice cloud properties. The method allows a seamless retrieval between regions where both radar and lidar are sensitive to the regions where one detects the cloud. We first implement a cloud phase identification method, including identification of supercooled water layers using the lidar signal and temperature to discriminate ice from liquid. We also include rigorous calculation of errors assigned in the variational scheme. We estimate the impact of the microphysical assumptions on the algorithm when radiances are not assimilated by evaluating the impact of the change in the area-diameter...
Clouds are an important component of the earth's climate system. A better description of their micro...
In the course of this thesis work different aspects of the retrieval of ice water content from satel...
This study examines the consistency and microphysics assumptions among satellite ice water content (...
[1] In this paper, data from spaceborne radar, lidar and infrared radiometers on the “A‐Train ” of s...
International audienceThe A-Train constellation of satellites provides a new capability to measure v...
The A-Train constellation of satellites provides a new capability to measure vertical cloud profiles...
In this study, we show how solar radiance observations can be used to validate and further constrain...
In this paper, the statistical properties of tropical ice clouds (ice water content, visible extinct...
International audienceThis study illustrates the high potential of RALI, the French airborne radar-l...
International audienceIn this paper the statistical properties of tropical ice clouds (ice water con...
In this paper we present the latest refinements brought to the DARDAR-CLOUD product, which contains ...
The combination of radar and lidar in space offers the unique potential to retrieve vertical profile...
Vertical profiles of ice water content (IWC) can now be derived globally from spaceborne cloud satel...
An optimal estimation (OE) retrieval method is developed to infer three ice cloud properties simulta...
Clouds are an important component of the earth's climate system. A better description of their micro...
In the course of this thesis work different aspects of the retrieval of ice water content from satel...
This study examines the consistency and microphysics assumptions among satellite ice water content (...
[1] In this paper, data from spaceborne radar, lidar and infrared radiometers on the “A‐Train ” of s...
International audienceThe A-Train constellation of satellites provides a new capability to measure v...
The A-Train constellation of satellites provides a new capability to measure vertical cloud profiles...
In this study, we show how solar radiance observations can be used to validate and further constrain...
In this paper, the statistical properties of tropical ice clouds (ice water content, visible extinct...
International audienceThis study illustrates the high potential of RALI, the French airborne radar-l...
International audienceIn this paper the statistical properties of tropical ice clouds (ice water con...
In this paper we present the latest refinements brought to the DARDAR-CLOUD product, which contains ...
The combination of radar and lidar in space offers the unique potential to retrieve vertical profile...
Vertical profiles of ice water content (IWC) can now be derived globally from spaceborne cloud satel...
An optimal estimation (OE) retrieval method is developed to infer three ice cloud properties simulta...
Clouds are an important component of the earth's climate system. A better description of their micro...
In the course of this thesis work different aspects of the retrieval of ice water content from satel...
This study examines the consistency and microphysics assumptions among satellite ice water content (...