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91.
92.
大气中低频重力波指数与西南低涡发展及其暴雨的关系 总被引:1,自引:0,他引:1
采用低频重力波指数法,对西南低涡发展演变及其暴雨强度,落区进行了诊断分析和预测。结果指出:(1)低频重力波指数Cp,Ci对西南低涡的发展及其暴雨强度,落区都有一定的预测意义,其预见期可达24小时以上;(2)低频重力波指数随时间变化与西南低涡发有较好的对应关系;(3)低频重力波指数的大小与西南低涡暴雨强度相联系;(4)西南低涡暴雨落区通常发生在Cp,Ci指数的最大负值区内和Cp等值线梯度最大的区域。 相似文献
93.
南方大到暴雪的一种预报方法 总被引:3,自引:1,他引:3
对构成南方大到暴雪的两个特征量:降水量和积雪深度用多种预报方法从晴雨、降水性质、降水量级、冰冻及积雪厚度等不同角度分别进行预报,然后通过推理组合,最终建立暴雪预报方法。该方法除了可以得出有无大到暴雪的预报结果外,还可以得到多种中间预报结果,从而适应预报服务的多种需要。在近3年的实际使用中获得了很好的效果。 相似文献
94.
The statistical relationship between the summer monsoon rainfall over all India, northwest India and peninsular India, onset
dates of monsoon and the index of mid latitude, (35° to 70°N) meridional circulation at 500 hPa level over different sectors
and hemisphere based on 19 years (1971–1989) data, have been examined. The results indicate that (i) the summer monsoon rainfalls
over all India, northwest India and peninsular India show a significant inverse relationship with the strength of meridional
index during previous January over sector 45°W to 90°E. (ii) The summer monsoon rainfalls over all India and peninsular India
show a significant inverse relationship with the strength of meridional index during previous December over sector 90°E to
160°E, (iii) The summer monsoon rainfall over northwest India shows a significant direct relationship with the meridional
index during previous May over sector 160°E to 45°W.
Significant negative relationships are also observed between the meridional circulation indices of previous October (sector
3 and 4), previous December (sectors 1, 3 and 4), previous winter season (sector 3 and 4) and the onset dates of summer monsoon
over India. The meridional circulation index thus can have some possible use for long range forecasting of monsoon rainfall
over all India, northwest India and peninsular India, as well as the onset dates of monsoon. 相似文献
95.
Luo Zhexian 《Acta Meteorologica Sinica》1994,8(1):60-71
The computational formulae are given for single-contour constant-value vortex motion influenced by the Coriolis force in the framework of contour dynamics,by which four numerical computations are performed,the result exhibiting their validity. 相似文献
96.
1982年9-12月,在漳州温泉区布设了台网进行微震观测。结果表明,在漳州及其以北的沙建温泉区一带均有微震与小震群活动,震级为Ms=-1~1级,震源为3-14km。用震源的分布、震源机制解和微震综合断层面解的结果,研究了地质断裂的现今活动性及其与温泉的关系。认为区内东西向与北东向断裂是控制温泉分布的主要构造,而北西向断裂则是温泉的涌水构造。经探明,在有浅层热储的漳州市以及地质断裂发育的沙建地区,地震波速与介质泊松系数均低于正常值。此外,台网尚观测记录到一些异常的振动现象。根据地震的综合信息,探讨了研究区微震活动与水热活动的关系。 相似文献
97.
A case of mesoscale convective complex(MCC)which evolved into a vortex is documented in this paper.As theMCC entered into the dissipating phase,a well-defined spirally banded structure became visible in the satellite image.The blackbody temperature(TBB)of the residual cold-cloud-shield indicates the vortex existed in the layer from 400 to250 hPa.According to the upper air analysis,the upper level vortex was an anticyclone.The MCC-generated vortex wasvisualized in the satellite images because it was located in the subtropical high where the wind field was very weak. 相似文献
98.
99.
Tao Zuyu Wang Hongqing Bai Jie Zhu Wenqin Shi Dingpu Yang Hongmei 《Acta Meteorologica Sinica》1995,9(2):184-189
A case of mesoscale convective complex(MCC) which evolved into a vortex is documented in this paper.As the MCC entered into the dissipating phase,a well-defined spirally banded structure became visible in the satellite image.The blackbody temperature(TBB) of the residual cold-cloud-shield indicates the vortex existed in the layer from 400 to 250 hPa.According to the upper air analysis,the upper level vortex was an anticyclone.The MCC-generated vortex was visualized in the satellite images because it was located in the subtropical high where the wind field was very weak. 相似文献
100.
Hydrodynamical Modeling Of Oceanic Vortices 总被引:1,自引:0,他引:1
Xavier Carton 《Surveys in Geophysics》2001,22(3):179-263
Mesoscale coherent vortices are numerous in the ocean.Though they possess various structures in temperature and salinity,they are all long-lived, fairly intense and mostly circular. Thephysical variable which best describes the rotation and the density anomaly associated with coherent vortices is potential vorticity. It is diagnostically related to velocity and pressure, when the vortex is stationary. Stationary vortices can be monopolar (circular or elliptical) or multipolar; their stability analysis shows thattransitions between the various stationary shapes are possible when they become unstable. But stable vortices can also undergo unsteady evolutions when perturbed by environmental effects, likelarge-scale shear or strain fields, -effect or topography. Changes in vortex shapes can also result from vortex interactions. such as the pairing, merger or vertical alignment of two vortices, which depend on their relative polarities and depths. Such interactions transfer energy and enstrophy between scales, and are essential in two-dimensional and in geostrophic turbulence. Finally, in relation with the observations, we describe a few mechanisms of vortex generation. 相似文献