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- English: 839. Fig.5 depicts the Southern Hemisphere midlatitude 300-hPa geopotential height field. 中文:图5给出南半球中纬度300百帕位势高度场。
- Fig.5 depicts the Southern Hemisphere midlatitude 300-hPa geopotential height field. 图5给出南半球中纬度300百帕位势高度场。
- Wallace, J. M. and D. S. Gutzler, (1981). Teleconnections in the geopotential height field during the Northern Hemisphere winter. Mon. Wea. Rev., 109, 784-812. 采用224兆赫雷达首次测得的夏季极地中间层大气的后向散射。“地球物理研究通讯”,第15卷28-31页。
- Then, it is the direct role which transforming surface pressure field (or upper geopotential height field) is studied of condensation-precipitation in large-scale flow and cumulus convection. 用郭晓岚积云对流参数化方案(已考虑凝结内潜热对大气的加热作用),增加考虑了因大尺度凝结降水和积云对流参数化凝结降水造成地面气压场及高空位势高度场的变化,后者应是凝结外潜热过程作用的结果。
- Lower level geopotential height field 低层平均高度场
- Analytic Error in a Climatological Figure of 10 hPa Geopotential Height Field 一张存在分析错误的10 hPa等压面位势高度气候图
- Some Circulation Indices and Their Variation Character of Hemispherical Monthly Mean Geopotential Height Fields 半球月平均位势高度场的若干环流指数及其变化特征
- Analysis on Spherical Function Structures of Climatic Variability for Global Atmospheric Geopotential Height Fields 全球大气位势高度场气候变率的球函数分析
- Time-lag Correlation Analysis of Homogeneous and Inhomogeneous Anomaly Indexes of Hemispherical Monthly Mean Geopotential Height Fields 半球月平均位势高度场均匀和非均匀异常指数的时滞性分析
- Investigation on evolutive law of geopotential height of two poles and the equator at 500 hPa geopotential height field 500 hPa高度场上两极和赤道位势高度气候演变规律的研究
- geopotential height fields 位势高度场
- So, the zonal index can be defined as the difference in geopotential height between40° N and65° N. 西风环流的强弱不仅对北半球的气候有显著影响,对我国冬季的气温和降水也有显著关系。
- Predicting East Coast Winter Storm Frequencies from Midtropospheric Geopotential Height Patterns. 从对流层中层位势型预报东海岸冬季风暴频率。
- Geopotential height represents anticorrelation between the Antarctic pole region and tropic region. 总体上,南极位势高度与赤道位势高度有极其显著的负相关关系,北极与赤道的位势高度之间以及两极位势高度之间相关关系不显著;
- The response of the Indian Ocean SSTA with the time lag by 4-6 months to the variations of global geopotential height at 500hPa is revealled. 印度洋海温异常可能存在对全球500hPa高度场变化的4-6个月左右的滞后响应。
- In the paper, using Morlet wavelet transform and EOF analysis to analyze Polar Vortex and SAH at 100hPa Geopotential Height. 利用NCEP/NCAR高度场资料进行EOF分解;并对冬、夏极涡与夏季南亚高压的面积进行Morlet小波变换.
- In the summer of 2001, the 500hPa geopotential height anomaly was positive in the Eurasia, and the positive center was over Lake Baikal. 欧亚地区夏季50 0hPa位势高度距平场上中高纬从西到东呈现为“ - +-”分布形式 ,贝加尔湖地区为正距平中心 ;
- Of all analyzed variables, the prediction skill of geopotential height and surface air temperature (precipitation) is the highest (lowest). 结果表明;该模式对对流层中、高层大气环流的预测能力强于低层;位势高度场和表面气温的可预测性最大;而降水的可预测性则相对较小.
- It is shown that, over the grid-points where orography height is negative, there exists false sensible heat source that leads to warmer temperature and higher geopotential height. 本文通过理论分析,从多圈层相互作用的角度揭示了谱模式中负地形通过产生虚假的感热源而导致模式系统误差的产生的原因。
- There is positive geopotential height anomaly in mid-troposphere over the Japan area.Consequently, there is a positive anomaly of baroclinic disturbance in East Asia. 在中对流层有高度正距平位于日本一带,此距平西侧有利于斜压扰动的发展(脊之西边有利于斜压扰动)。