Articles | Volume 19, issue 15
https://doi.org/10.5194/gmd-19-7069-2026
https://doi.org/10.5194/gmd-19-7069-2026
Model evaluation paper
 | 
03 Aug 2026
Model evaluation paper |  | 03 Aug 2026

Sensitivity of Arctic mixed-phase cloud simulations to ice microphysical modifications in the WDM6 scheme of WRF (v4.3.1)

Hyun-Joon Sung, Kyo-Sun Lim, Song-You Hong, JiHoon Shin, Baek-Min Kim, and Ji-Hun Choi

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Interactive discussion

Status: closed

Comment types: AC – author | RC – referee | CC – community | EC – editor | CEC – chief editor | : Report abuse
  • RC1: 'Comment on egusphere-2026-1486', Anonymous Referee #1, 30 Apr 2026
    • AC1: 'Reply on RC1', Hyun-Joon Sung, 10 Jun 2026
  • RC2: 'Comment on egusphere-2026-1486', Anonymous Referee #2, 14 May 2026
    • AC2: 'Reply on RC2', Hyun-Joon Sung, 10 Jun 2026

Peer review completion

AR – Author's response | RR – Referee report | ED – Editor decision | EF – Editorial file upload
AR by Hyun-Joon Sung on behalf of the Authors (10 Jun 2026)  Author's response   Author's tracked changes   Manuscript 
ED: Referee Nomination & Report Request started (11 Jun 2026) by Ulas Im
RR by Anonymous Referee #1 (19 Jun 2026)
RR by Anonymous Referee #2 (29 Jun 2026)
ED: Publish subject to technical corrections (29 Jun 2026) by Ulas Im
AR by Hyun-Joon Sung on behalf of the Authors (06 Jul 2026)  Manuscript 
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Short summary
Arctic clouds containing both liquid droplets and ice crystals are difficult to simulate. We tested how ice-related changes in a weather model, designed for temperate regions, perform in the Arctic. Ice crystal shape is the dominant factor: making crystals spherical substantially reduces cloud ice and shifts it to snow. These modifications are moderate in temperate regions but stronger in the Arctic. As this rests on a single case, they should be validated across diverse cases and climates.
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