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Sensitivity of Cyclone Tracks to the Initial Moisture Distribution: A Moist Potential Vorticity Perspective
作者姓名:Zuohao CAO  Da-Lin ZHANG
作者单位:[1]Meteorological Service of Canada, Ontario, Canada [2]Department of Meteorology, University of Maryland, College Park, Maryland, USA
基金项目:which was supported by the National Science and Engineering Research Council and the Meteorological Service of Canada. DLZ acknowledges the fundin,National Science and Engineering Research Council,the Meteorological Service of Canada,中国科学院资助项目
摘    要:In this study, the characteristics of moist potential vorticity (MPV) in the vicinity of a surface cyclone center and their physical processes axe investigated. A prognostic equation of surface absolute vorticity is then used to examine the relationship between the cyclone tracks and negative MPV (NMPV) using numerical simulations of the life cycle of an extratropical cyclone. It is shown that the MPV approach developed herein, i.e., by tracing the peak NMPV, can be used to help trace surface cyclones during their development and mature stages. Sensitivity experiments are conducted to investigate the impact of different initial moisture fields on the effectiveness of the MPV approach. It is found that the lifetime of NMPV depends mainly on the initial moisture field, the magnitude of condensational heating, and the advection of NMPV. When NMPV moves into a saturated environment at or near a cyclone center, it can trace better the evolution of the surface cyclone due to the conservative property of MPV. It is also shown that the NMPV generation is closely associated with the coupling of large potential temperature and moisture gradients as a result of frontogenesis processes. Analyses indicate that condensation, confluence and tilting play important but different roles in determining the NMPV generation. NMPV is generated mainly through the changes in the strength of baroclinicity and in the direction of the moisture gradient due to moist and/or dry air mass intrusion into the baroclinic zone.

关 键 词:飓风  湿度  灵敏性  天气系统
收稿时间:2005-01-07
修稿时间:2005-05-17

Sensitivity of cyclone tracks to the initial moisture distribution: A moist potential vorticity perspective
Zuohao CAO,Da-Lin ZHANG.Sensitivity of cyclone tracks to the initial moisture distribution: A moist potential vorticity perspective[J].Advances in Atmospheric Sciences,2005,22(6):807-820.
Authors:Zuohao Cao  Da-Lin Zhang
Institution:Meteorological Service of Canada, Ontario, Canada,Department of Meteorology, University of Maryland, College Park, Maryland, USA
Abstract:In this study, the characteristics of moist potential vorticity (MPV) in the vicinity of a surface cyclone center and their physical processes are investigated. A prognostic equation of surface absolute vorticity is then used to examine the relationship between the cyclone tracks and negative MPV (NMPV) using numerical simulations of the life cycle of an extratropical cyclone. It is shown that the MPV approach developed herein, i.e., by tracing the peak NMPV, can be used to help trace surface cyclones during their development and mature stages. Sensitivity experiments are conducted to investigate the impact of different initial moisture fields on the effectiveness of the MPV approach. It is found that the lifetime of NMPV depends mainly on the initial moisture field, the magnitude of condensational heating, and the advection of NMPV. When NMPV moves into a saturated environment at or near a cyclone center, it can trace better the evolution of the surface cyclone due to the conservative property of MPV. It is also shown that the NMPV generation is closely associated with the coupling of large potential temperature and moisture gradients as a result of frontogenesis processes. Analyses indicate that condensation, confluence and tilting play important but different roles in determining the NMPV generation. NMPV is generated mainly through the changes in the strength of baroclinicity and in the direction of the moisture gradient due to moist and/or dry air mass intrusion into the baroclinic zone.
Keywords:cyclone tracks  moist potential vorticity  mid-latitude cyclones
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