NASA NTRS · 20070009922
Evaluating Clouds in Long-Term Cloud-Resolving Model Simulations with Observational Data
Abstract
Two 20-day, continental midlatitude cases are simulated with a three-dimensional (3D) cloud-resolving model (CRM) and compared to Atmospheric Radiation Measurement (ARM) data. This evaluation of long-term cloud-resolving model simulations focuses on the evaluation of clouds and surface fluxes. All numerical experiments, as compared to observations, simulate surface precipitation well but over-predict clouds, especially in the upper troposphere. The sensitivity of cloud properties to dimensionality and other factors is studied to isolate the origins of the over prediction of clouds. Due to the difference in buoyancy damping between 2D and 3D models, surface precipitation fluctuates rapidly with time, and spurious dehumidification occurs near the tropopause in the 2D CRM. Surface fluxes from a land data assimilation system are compared with ARM observations. They are used in place of the ARM surface fluxes to test the sensitivity of simulated clouds to surface fluxes. Summertime simulations show that surface fluxes from the assimilation system bring about a better simulation of diurnal cloud variation in the lower troposphere.
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Zeng, Xiping, Tao, Wei-Kuo, Zhang, Minghua, Peters-Lidard, Christa, Lang, Stephen, Simpson, Joanne, Kumar, Sujay, Xie, Shaocheng, Eastman, Joseph L., Shie, Chung-Lin, Geiger, James V.. 2006-05-03. Evaluating Clouds in Long-Term Cloud-Resolving Model Simulations with Observational Data. https://ntrs.nasa.gov/citations/20070009922
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