Articles | Volume 13, issue 2
https://doi.org/10.5194/amt-13-907-2020
https://doi.org/10.5194/amt-13-907-2020
Research article
 | 
26 Feb 2020
Research article |  | 26 Feb 2020

Estimation of cloud optical thickness, single scattering albedo and effective droplet radius using a shortwave radiative closure study in Payerne

Christine Aebi, Julian Gröbner, Stelios Kazadzis, Laurent Vuilleumier, Antonis Gkikas, and Niklaus Kämpfer

Viewed

Total article views: 2,896 (including HTML, PDF, and XML)
HTML PDF XML Total BibTeX EndNote
1,785 1,056 55 2,896 58 62
  • HTML: 1,785
  • PDF: 1,056
  • XML: 55
  • Total: 2,896
  • BibTeX: 58
  • EndNote: 62
Views and downloads (calculated since 28 Oct 2019)
Cumulative views and downloads (calculated since 28 Oct 2019)

Viewed (geographical distribution)

Total article views: 2,896 (including HTML, PDF, and XML) Thereof 2,662 with geography defined and 234 with unknown origin.
Country # Views %
  • 1
1
 
 
 
 

Cited

Latest update: 18 Apr 2024
Download
Short summary
Clouds are one of the largest sources of uncertainties in climate models. The current study estimates the cloud optical thickness (COT), the effective droplet radius and the single scattering albedo of stratus–altostratus and cirrus–cirrostratus clouds in Payerne, Switzerland, by combining ground- and satellite-based measurements and radiative transfer models. The estimated values are thereafter compared with data retrieved from other methods. The mean COT is distinct for different seasons.