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涡动非地转位势通量对风暴轴维持的影响
引用本文:朱伟军,孙照渤.涡动非地转位势通量对风暴轴维持的影响[J].大气科学,2001,25(1):71-78.
作者姓名:朱伟军  孙照渤
作者单位:南京气象学院大气科学系,南京210044
基金项目:国家自然科学基金资助项目49475258
摘    要:通过对涡动动能方程和涡动有效位能方程的诊断分析,结果发现,斜压性是导致风暴轴入口区天气尺度涡动发展的最主要原因,而涡动发展后则主要通过非地转位势通量向下游频散能量而衰减,并进一步成为激发下游新的涡动活动发展的主要能量来源。因此,涡动非地转位势通量所引起的"下游发展效应"对风暴轴在东端弱斜压区的维持具有十分重要的作用。

关 键 词:风暴轴    斜压性    非地转    能量

Effects of Eddy Ageostrophic Geopotential Fluxes on the Maintenance of Storm Tracks
Zhu Weijun and Sun Zhaobo.Effects of Eddy Ageostrophic Geopotential Fluxes on the Maintenance of Storm Tracks[J].Chinese Journal of Atmospheric Sciences,2001,25(1):71-78.
Authors:Zhu Weijun and Sun Zhaobo
Abstract:A diagnostic analysis is conducted of the local eddy kinetic and potential energy functions. Evidence suggests that due to the strong baroclinicity in the entrance area of the storm tracks, the synoptic eddies there are mainly developed through baroclinic energy conversion, yet weakened by radiating large energy downstream via eddy ageostrophic geopotential fluxes, which (so called downstream developing), is in turn, the predominant energy source to intrigue further disturbances downstream, and plays an important role in the maintenance of the tracks in their eastern parts with weaker baroclinicity.
Keywords:stormtracks  baroclinicity  ageostrophic  ener
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