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NASA NTRS · 20040171609

Microphysical Timescales in Clouds and their Application in Cloud-Resolving Modeling

Abstract

Computational phenomena (i.e., spurious supersaturation and negative mixing ratio of cloud water) usually exist in cloud-resolving models when the time step for explicit integration is larger than a microphysical timescale in clouds. In this paper, the microphysical timescales in clouds are studied, showing that the timescale of water vapor condensation (or cloud water evaporation) is smaller than 10 s - the order of a typical time step for cloud-resolving models. To avoid spurious computational phenomena in cloud-resolving modeling, it is suggested that moist entropy be used as a prognostic thermodynamic variable, and temperature be diagnosed from that and other prognostic variables. A simple numerical model with moist entropy as a prognostic variable, for example, is presented to show that spurious computational phenomena are removed when moist entropy is used as a prognostic variable.

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BibTeXRIS

Zeng, Xi-Ping, Tao, Wei-Kuo, Simpson, Joanne. 2004-10-06. Microphysical Timescales in Clouds and their Application in Cloud-Resolving Modeling. https://ntrs.nasa.gov/citations/20040171609

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