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951.
王刚 《高原山地气象研究》2007,27(1)
本文通过典型相关分析研究了海温指数与攀西地区南部年降雨量的相关关系,结果表明年降雨量趋势与NINO3呈较大正相关,两者有密切的联系. 相似文献
952.
该文利用地形追随坐标三维云模式,对湖北的一次对流降水过程进行了平坦地面和理想斜坡地形的模拟试验。结果发现平坦地面模拟的回波强度、最大降水强度和累积降水都与实况有相当的差距。理想地形的对流过程虽然不能模拟出对流群中多单体的生消过程,但最大降水强度和累积降水都比平坦地面的大,更接近实测结果。模拟试验表明,在地形坡度较大时,会产生较强的上升气流,从而使系统对流发展旺盛,产生较大的降水和较强的回波。所以在模拟山区和丘陵地带的对流系统时,采用地形坐标并考虑地形将会改善模式的模拟结果。 相似文献
953.
954.
955.
依据青海海西德令哈、乌兰的树木年轮资料序列与柴达木地区1962—2001年5~6月份地温资料序列之间较好的同期相关特征,重建了柴达木地区5~6月份地面Ocm温度及地面最高温度千年历史资料序列。运用乘积平均值、误差缩减值等方法对重建方程进行了检验,证明重建序列可信。通过分析发现,在重建的1098年中,有6个主要的冷期和6个主要的暖期,地面0cm温度序列存在12个主要突变期,地面最高温度序列存在15个主要突变期。周期分析表明,地面0cm温度和地面最高温度均存在183年、122年和91年左右的长周期以及6.8年和2~3年的短周期。 相似文献
956.
一次暴雨空报的诊断分析 总被引:10,自引:0,他引:10
实时天气系统的时空分布、多个物理要素、雷达回波特征都表现出24小时内鄂东地区及武汉单站有暴雨天气发生,结果暴雨空报。为了找到暴雨空报原因,对T213数值预报产品中多个物理要素进行诊断分析。首先根据物理量场分析鄂东地区暴雨是否产生;其次根椐物理量值分析武汉单站有否暴雨。结果表明:鄂东及武汉单站多个物理要素场和值不支持有暴雨产生。如:没有能量锋区、湿度锋区和水汽的辐合支持降水天气系统继续发展和加强,鄂东不会产生区域性暴雨。武汉单站涡度平流反映出低层正值高层负值,这种配置没有动力作用。垂直速度表明在汉口上空整层为下沉气流区,产生不了动力不稳定。单站ra和rf值表现出,前者为正值的水汽辐散;后者为小值。K指数不但没有达到K≥35℃以上,而且表现出逐日递减。这几种要素值都不支持单站次级环流的产生,所以,武汉不会发生暴雨。 相似文献
957.
The rainy season precipitation in Tibet (RSPT) is a direct cause for local floods/droughts. It also indirectly affects the thermal conditions of the Tibetan Plateau, which can result in anomalous patterns of atmospheric circulation over East Asia. The interannual variability of the RSPT is often linked with the El Niño–Southern Oscillation (ENSO), but the relevant mechanisms are far from being understood, particularly for different types of ENSO events. We investigated the interannual variation of the RSPT in association with different types of ENSO. A quasi-3-yr period of the RSPT (less–more–more precipitation) was significant at the 95% confidence level. A joint multi-taper method with singular value decomposition analysis of the coupled field between the RSPT and the sea surface temperature (SST) revealed that the developing eastern Pacific type El Niño was accompanied by a decrease in the RSPT. The shift from the central Pacific type El Niño to the eastern Pacific La Niña was accompanied by an increase in the RSPT. Weakening of the central Pacific La Niña was accompanied by an increase in the RSPT. Analysis of the mechanism of this coupling, using the same analysis method but other climatic factors, indicated that the gradually strengthening eastern Pacific El Niño can inhibit the Walker circulation, weakening the South Asian summer monsoon, and resulting in transport of less water vapor from the Bay of Bengal to Tibet. The change from the central Pacific El Niño to the eastern Pacific La Niña led to continued strengthening of the Walker circulation with westward movement of the ascending area. This enhanced the South Asian summer monsoon over the Arabian Sea and transported more water vapor to Tibet. The decreasing central Pacific La Niña accompanied by persistent cooling of SSTs in the equatorial Pacific led to a strong eastern North Pacific summer monsoon, causing an anomaly in the easterly transport of water vapor from the Sea of Japan to Tibet and increased RSPT. 相似文献
958.
Summary A diagnostic model (DIAMOD) for the atmosphere over Europe is use at the University of Vienna. Central parameters in each diagnostic column (horizontal resolution 100 km, time resolution 12 hours) are the vertical moisture plus heat flux (the total convective heat fluxh) and the vertical rain flux (r); both are functions of pressure. In this study DIAMOD is applied to validate the output of a forecast model for the simulation of acid deposition (EURAD) which is in use at the University of Cologne. The basic equations of both DIAMOD and EURAD models are summarized with emphasis on the sub-gridscale hydrologic components.First, the nontrivial problem of validating model output versus observations is discussed. Two different validation techniques based upon the budget equations are indentified. The fully prognostic technique compares the forecast of EURAD for the total verification period with the corresponding DIAMOD output. The semiprognostic validation technique involves only one-time-step tendencies. Neither yields an exact correspondence between EURAD and DIAMOD; however, the semiprognostic technique comes somewhat closer to the ideal of an objective validation. The quantities investigated are: The fields, the time tendencies and the fluxesh andr.Second, EURAD is validated versus DIAMOD with both techniques for the EUMAC Joint Wet Case (the Chernobyl episode) in April 1986; the output fields include selected profiles ofh(p) over France (a moist night situation) and over Greece (a dry day situation). The comparison demonstrates for both that the EURAD forecasts are acceptable for ther-fluxes but are relatively poor for theh-fluxes. Reasons for the differences are discussed.With 11 Figures 相似文献
959.
南疆沙漠腹地大气边界层气象要素廓线分析 总被引:1,自引:0,他引:1
利用塔中80m观测塔梯度系统采集的2006年8月、10月和2007年1月、4月的风、温度、湿度资料,结合气象站的同步气象资料,对南疆沙漠腹地近地层四季的晴天平均风速、温度、湿度廓线分布特征进行分析。结果表明,晴天平均风速白天随高度升高增加缓慢,夜间较快,低层风速白天比夜间大,高层则白天比夜间小,春夏季风速较大;四季平均温度廓线表现为夜间辐射型、早上过渡型、白天日射型和傍晚过渡型等四种类型,早、晚过渡时间四季各有不同,日最低、最高温度出现时间四季则相差不大;冬季夜间比湿随高度升高而增大,整个80m近地层表现为逆湿状态,其他季节逆湿一般出现在0.5—1m、1~2m、32—47m、63—80m等4个层次上,各逆湿层出现的时间各季节有所差异。 相似文献
960.
Big data has emerged as the next technological revolution in IT industry after cloud computing and the Internet of Things. With the development of climate observing systems, particularly satellite meteorological observation and high-resolution climate models, and the rapid growth in the volume of climate data, climate prediction is now entering the era of big data. The application of big data will provide new ideas and methods for the continuous development of climate prediction. The rapid integration, cloud storage, cloud computing, and full-sample analysis of massive climate data makes it possible to understand climate states and their evolution more objectively, thus predicting the future climate more accurately. This paper describes the application status of big data in operational climate prediction in China; it analyzes the key big data technologies, discusses the future development of climate prediction operations from the perspective of big data, speculates on the prospects for applying climatic big data in cloud computing and data assimilation, and puts forward the notion of big data-based super-ensemble climate prediction methods and computerbased deep learning climate prediction methods. 相似文献