Numerical Simulation of the Life Cycle of a Persistent Wintertime Inversion over Salt Lake City
Author:
Publisher
Springer Science and Business Media LLC
Subject
Atmospheric Science
Link
http://link.springer.com/content/pdf/10.1007/s10546-013-9821-2.pdf
Reference28 articles.
1. Billings BJ, Grubisic V, Borys RD (2006) Maintenance of a mountain valley cold pool: a numerical study. Mon Weather Rev 134:2266–2278
2. Bravo M, Mira T, Soler MR, Cuxart J (2008) Intercomparison and evaluation of MM5 and meso -NH mesoscale models in the stable boundary layer. Boundary-Layer Meteorol 128:77–101
3. Chen F, Dudhia J (2001) Coupling an advanced land-surface/ hydrology model with the Penn State/ NCAR MM5 modeling system. Part I: model description and implementation. Mon Weather Rev 129:569–585
4. Cheng WYY, Steenburgh WJ (2005) Evaluation of surface sensible weather forecasts by the WRF and the Eta models over the Western United States. Weather Forecast 20:812–821
5. Colette A, Chow FK, Street RL (2003) A numerical study of inversion-layer breakup and the effects of topographic shading in idealized valleys. J Appl Meteorol 42:1255–1272
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