Verification of Hydrometeor Properties Simulated by a Cloud-Resolving Model Using a Passive Microwave Satellite and Ground-Based Radar Observations for a Rainfall System Associated with the Baiu Front
Author:
Affiliation:
1. Meteorological Research Institute, Japan Meteorological Agency
Publisher
Meteorological Society of Japan
Subject
Atmospheric Science
Link
http://www.jstage.jst.go.jp/article/jmsj/87A/0/87A_0_425/_pdf
Reference34 articles.
1. 1) Adler, R. F., H.-Y. M. Yeh, N. Prasad, W.-K. Tao, and J. Simpson, 1991: Microwave simulations of a tropical rainfall system with a three-dimensional cloud model. J. Appl. Meteor., 30, 924-953.
2. The 13–14 December 2001 IMPROVE-2 Event. Part III: Simulated Microphysical Budgets and Sensitivity Studies
3. A Double-Moment Multiple-Phase Four-Class Bulk Ice Scheme. Part I: Description
4. The 13–14 December 2001 IMPROVE-2 Event. Part I: Synoptic and Mesoscale Evolution and Comparison with a Mesoscale Model Simulation
5. The 13–14 December 2001 IMPROVE-2 Event. Part II: Comparisons of MM5 Model Simulations of Clouds and Precipitation with Observations
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