1430: Ice optical sensitivities of cloud-radiative heating in ICON
Principal investigator: Emma Järvinen
Karlsruher Institut für Technologie (KIT), Institut für Meteorologie und Klimaforschung (Community project)
Project abstract
Report 7/2024 to 6/2025
Final report
Publications
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DOI: 10.5194/acp-25-8943-2025,
E. I. Sepúlveda Araya, S. C. Sullivan, and A. Voigt. Ice crystal complexity leads to weaker ice cloud radiative heating in idealized single-column simulations (2025). Atmos. Chem. Phys. 25 pp. 8943-8958.
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DOI: 10.5194/acp-26-1685-2026,
S. C. Sullivan-1, A. Voigt, E. I. Sepúlveda Araya, S. Bucci, A. Miltenberger, M. K. Kupinski, C. Rolf, and M. Krämer. Evaluation of upper-tropospheric lower-stratospheric properties over the Asian monsoon region in a storm-resolving model (2026). Atmos. Chem. Phys. 26 pp. 1685-1698.
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DOI: forthcoming,
S. C. Sullivan-2, D. Bayly, N. Cherukuru, J. A. Levine, E. I. Sepúlveda Araya, T. E. Makgoale, A. Arellano, and K. M. Wood. Advanced visualization techniques for insight in clouds and climate research (2026). [Accepted at Bull. Amer. Meteorol. Soc.]
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DOI: 10.5194/egusphere-2024-3212,
Sepulveda Araya, E. I., S. Sullivan, and A. Voigt (2025). Sensitivity of ice cloud radiative heating to optical, macro- and microphysical properties. Atmos. Chem. Phys. Disc.
This article was recently accepted and is in press. It should appear in final form in ACP next month.