Evaluating an Ice Crystal Trajectory Growth (ICTG) Model on a Quasi‐Idealized Simulation of a Squall Line
Abstract A major challenge in numerical weather prediction models is the ability to accurately simulate the microphysical properties and growth of ice hydrometeors in clouds. Eulerian bulk microphysics schemes in these models tend to obscure the properties and evolution of individual ice crystals, o...
Furkejuvvon:
| Váldodahkkit: | , , , |
|---|---|
| Materiálatiipa: | Artigo |
| Giella: | Inglês |
| Almmustuhtton: |
American Geophysical Union (AGU)
2022-04-01
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| Ráidu: | Journal of Advances in Modeling Earth Systems |
| Fáttát: | |
| Liŋkkat: | https://doi.org/10.1029/2021MS002764 |
| Fáddágilkorat: |
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