Affiliation:
1. North Carolina State University, Raleigh, North Carolina
Abstract
Abstract
Theoretical, observational, and modeling studies have established an important role for latent heating in midlatitude cyclone development. Models simulate some contribution from condensational heating to cyclogenesis, even with relatively coarse grid spacing (on the order of 100 km). Our goal is to more accurately assess the diabatic contribution to storm-track dynamics and cyclogenesis while bridging the gap between climate modeling and synoptic dynamics. This study uses Weather Research and Forecasting model (WRF) simulations with 120- and 20-km grid spacing to demonstrate the importance of resolving additional mesoscale features that are associated with intense precipitation and latent heat release within extratropical cyclones. Sensitivity to resolution is demonstrated first with a case study, followed by analyses of 10 simulated winters over the North Atlantic storm track. Potential vorticity diagnostics are employed to isolate the influences of latent heating on storm dynamics, and terms in the Lorenz energy cycle are analyzed to determine the resulting influences on the storm track. The authors find that the intensities of individual storms and their aggregate behavior in the storm track are strongly sensitive to horizontal resolution. An enhanced positive feedback between cyclone intensification and latent heat release is seen at higher resolution, resulting in a systematic increase in eddy intensity and a stronger storm track relative to the coarser simulations. These results have implications for general circulation models and their projections of climate change.
Publisher
American Meteorological Society
Reference64 articles.
1. A review of the role of latent heat release in extratropical cyclones within potential vorticity framework;Ahmadi-Givi;J. Earth Space Phys.,2002
2. The dynamics of a midlatitude cyclone with very strong latent heat-release;Ahmadi-Givi;Quart. J. Roy. Meteor. Soc.,2004
3. Constraints on future changes in climate and the hydrological cycle;Allen;Nature,2002
4. The effects of convection on a simulated marine cyclone;Balasubramanian;J. Atmos. Sci.,1994
5. Composite analysis of winter cyclones in a GCM: Influence on climatological humidity;Bauer;J. Climate,2006
Cited by
131 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献