Articles | Volume 26, issue 18
https://doi.org/10.5194/acp-26-13319-2026
© Author(s) 2026. This work is distributed under the Creative Commons Attribution 4.0 License.
Cloud-type-dependent mixed-phase cloud climatology from CloudSat/CALIPSO measurements
Download
- Final revised paper (published on 22 Sep 2026)
- Preprint (discussion started on 05 May 2026)
Interactive discussion
Status: closed
Comment types: AC – author | RC – referee | CC – community | EC – editor | CEC – chief editor
| : Report abuse
-
RC1: 'Comment on egusphere-2026-2435', Anonymous Referee #1, 14 Jun 2026
- AC1: 'Reply on RC1', Kang Yang, 11 Aug 2026
-
RC2: 'Comment on egusphere-2026-2435', Anonymous Referee #2, 29 Jun 2026
- AC2: 'Reply on RC2', Kang Yang, 11 Aug 2026
Peer review completion
AR – Author's response | RR – Referee report | ED – Editor decision | EF – Editorial file upload
AR by Kang Yang on behalf of the Authors (11 Aug 2026)
Author's response
Author's tracked changes
Manuscript
ED: Referee Nomination & Report Request started (12 Aug 2026) by Matthias Tesche
RR by Anonymous Referee #2 (04 Sep 2026)
ED: Publish as is (07 Sep 2026) by Matthias Tesche
AR by Kang Yang on behalf of the Authors (08 Sep 2026)
This manuscript uses the 2B-CLDCLASS-LIDAR product (based on both CALIOP/CALIPSO and CPR/CloudSat) to classify mixed-phase cloud properties by “cloud types” defined by the satellite product during the period 2006-2010. Some of their key findings are: 1) in the tropics, Ac and Ns + DC clouds shift with the location of the storm tracks and ITCZ whereas 2) mid-latitude and polar Sc + St clouds are affected by atmosphere-ocean coupling, and 3) Cu cloud types are driven primarily by orographic convection. There is great value in classifying clouds by “cloud type” and the authors have carried out and presented a detailed analysis. The authors have also done a great job explaining most of the features they present and are quite careful to address uncertainty in their analysis as well. Mixed-phase clouds are challenging to observe and represent in models of all scales, and few analyses focus on “cloud type” classifications of mixed-phase clouds, especially on a global scale. This study is thus very valuable to the cloud and climate community. I only have a few suggestions regarding the manuscript: 1) though detailed, some of the written descriptions explaining the features of the plots are redundant and could be shortened to be more concise, 2) their explanation of features mostly focus on meteorological influences and do not say much about the role of aerosols, 3) the implications of their work can be strengthened. Overall, I recommend relatively minor revisions.
Specific comments: