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国家自然科学基金(40875026)

作品数:5 被引量:2H指数:1
相关作者:毛伟康袁金南黄辉军李春晖更多>>
相关机构:中国气象局广州热带海洋气象研究所更多>>
发文基金:国家自然科学基金广东省自然科学基金公益性行业(气象)科研专项更多>>
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COMPARISON OF THE STRUCTURAL CHARACTERISTICS OF DEVELOPED VERSUS UNDEVELOPED MID-LEVEL VORTEXES被引量:1
2014年
Using the NCEP 1°×1°reanalysis data,several obvious differences of the structural characteristics of developed versus undeveloped mid-level vortexes are studied.First,the central vorticity of the developed mid-level vortex increases towards higher levels while the undeveloped one decreases.The low-level convergence structure maintains well in the developed mid-level vortex whereas the undeveloped one does badly.Second,on the one hand,according to the symmetric analysis,the horizontal wind field and wind vertical section of the developed mid-level vortex are well symmetric while those of the undeveloped one are less symmetric.Meanwhile,weak wind vertical shear help the developed mid-level vortex to establish a warm core in upper-and mid-levels of the troposphere.On the other hand,according to the balance analysis,better balance between wind and pressure is shown in the mid-and lower-levels of the troposphere of the developed mid-level vortex than in those of the undeveloped vortex.Third,positive anomaly of potential vorticity is enhanced and developed in the vertical direction of the developed vortex.However,the undeveloped vortex weakens with a weak positive anomaly.
黄辉军袁金南李春晖毛伟康
南海地区发展型和不发展型中层涡旋的结构特征被引量:1
2012年
对NCEP 1°×1°再分析资料进行分析表明,南海地区发展型和不发展型中层涡旋的结构特征有着明显的区别:发展型中层涡旋的中心涡度逐渐增大,并同时向高层和低层发展,其中低层辐合维持得较好;而不发展中层涡旋的中心涡度则逐渐减小,不再向高层发展,其中低层辐合维持得较差。对称性分析表明,发展型中层涡旋的水平风场和风速垂直剖面都具有良好的对称性,而不发展型的较差;发展型中层涡旋中心的风速垂直切变小,有利于对流层中上层暖心的建立与加强,而不发展型则相反。平衡性分析表明,发展型涡旋在对流层中低层的平衡性较好,涡旋维持着较好的风压平衡关系,有利于涡旋的发展;不发展型涡旋则较差。纬向剖面位涡异常分析表明,发展型中层涡旋的正位涡异常在增强的同时向上发展,涡旋处于持续发展的阶段;而不发展型位涡则相反,一方面强度在减小,另一方面没有向上发展,涡旋逐渐减弱。
黄辉军袁金南李春晖毛伟康
关键词:热带气旋结构特征
AN ANALYSIS OF DISTRIBUTION AND MESOSCALE STRUCTURE OF PRECIPITATION ABOUT LANDFALL TROPICAL CYCLONE KOPPU(0915)
2016年
Observation from automatic weather stations, radars and TRMM satellites are employed to investigate the precipitation distribution of tropical cyclone(TC) Koppu(0915) that made landfall on Guangdong province in 2009.The results show that the precipitation of landfall TC Koppu is featured by significant asymmetry and mesoscale structure, and occurs mainly to the left of its moving path. By examining the sea surface temperature(SST), water vapor flux, Q vector, vertical wind shear of environment etc., it is found out that the distribution of SST, water vapor convergence, low-level convective ascending and vertical wind shear facilitates the TC precipitation to take place to the left of the TC moving path. The mesoscale structure separated by Barnes band-pass filter presents that the precipitation of landfall KOPPU has some organized mesoscale spiral structures, which is around the TC center and composed of the form of belts or blocks. The heavy local rainfall of landfall TC Koppu is primarily associated with the rainfall due to mesoscale spiral structure.
安成袁金南蒙伟光张艳霞蒋德海
关键词:PRECIPITATIONDIAGNOSTICANALYSISLANDFALLTCASYMMETRIC
INVERSION OF TEMPERATURE FROM AMSU-A AND ITS APPLICATION ON WARM-CORE OF TROPICAL DEPRESSION OVER THE SOUTH CHINA SEA
2016年
The linear regression and horizontally stepwise correction are conducted on the observational data from AMSU-A L1 B of NOAA polar orbit satellite to invert a 40-layers(from 1,000 h Pa to 0.1 h Pa) dataset of atmospheric temperature with a horizontal resolution of 0.5°×0.5° after the correction of satellite antenna pattern and limb adjustment. Case study shows that the inversion data of temperature can reveal the detail structure of warm core in tropical cyclone. We choose two categories of tropical depressions(TDs) over the South China Sea, including the non-developing TDs and developing TDs. Both of them are developed downward from the middle and upper level to the lower level. Comparison between the evolutions of warm core in the two categories of TDs indicates that the warm core is developed downward from the middle and upper troposphere to the sea surface in all the downward-developing TDs. The difference is that in the group of further developing TDs, the warm core in the upper troposphere is intensified suddenly when it is extending to the sea surface. The warm core in the upper and lower troposphere is strengthened in a meantime. But the similar feature is not observed in the non-developing TDs. Then it may be helpful to judge the TD development by monitoring the change in its warm-core structure.
袁金南蒙伟光张艳霞蒋德海李春晖毛伟康黄辉军
关键词:COREINVERSIONTEMPERATUREAMSU-AOVER
AN ANALYSIS ON INTERDECADAL VARIATIONS OF TROPICAL CYCLONE PRECIPITATION IN GUANGDONG PROVINCE OF CHINA
2012年
The interdecadal variations of tropical cyclones(TCs) and their precipitation over Guangdong Province are investigated using the observational data of TCs and precipitation from 26 observational stations in the province from 1951 to 2005.The results show that the TCs precipitation shows an oscillation with a peak value of about 25 years,with both the numbers of the Guangdong-influencing TCs and TCs formed in the western North Pacific oscillating with a peak value of about 23 years.The correlations are highly positive between the interdecadal variation of TC precipitation over the province and these numbers.The interdecadal variation of TC precipitation in the province shows significant negative correlations with the interdecadal variation of annual mean SST in some parts of the western North Pacific and the interdecadal variation of annual mean 500 hPa geopotential heights in some parts of the middle and high latitudes over the North Pacific.In general,there are high mean SSTs on the equator from central to eastern Pacific,low mean SSTs in the middle and high latitudes over the North Pacific and a main strong East Asian trough over the North Pacific in the period of less TC precipitation as compared with the period of more TC precipitation over the province.
袁金南郑彬
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