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901.
东太平洋冷舌区海表面温度日变化特征的模拟研究   总被引:1,自引:0,他引:1  
本文通过分辨太阳辐射日变化, 利用中国科学院大气物理研究所大气科学和地球流体力学数值模拟国家重点实验室 (LASG/IAP) 气候系统海洋环流模式 (LICOM), 模拟了东太平洋冷舌区海表面温度 (SST) 的日变化特征并研究了弱混合对其影响。采用理想的太阳辐射日变化强迫上层垂向分辨率为10 m的海洋模式LICOM, 模拟出了SST日变化一些特征, 同时海洋的上层流场也产生明显日变化。模拟的SST日变化振幅水平分布与观测接近, 且受太阳辐射日变化振幅水平分布调制。在赤道中东太平洋区, 模拟的SST日变化振幅 (约为0.3~0.4℃) 比观测偏小约0.1~0.2℃。模拟的SST日变化峰值出现在15~16 时 (当地标准时间), 落后于太阳辐射峰值2~3个小时, 接近观测。进一步减弱混合后, 模拟的日变化振幅增加约0.1℃, 更接近观测。这说明在东太平洋冷舌区SST日变化主要受太阳辐射日变化和垂直混合影响。此外, 混合减小后, 在太阳辐射日变化调制下, 平均态 (如混合层、温度和流场) 也出现明显变化。在赤道东太平洋冷舌区北侧, 弱混合导致混合层变浅, 变浅使热量堆积进而使平均SST升高约0.3℃; 在赤道东太平洋冷舌南侧, 经向平流加强导致平均SST降低约0.2℃。  相似文献   
902.
渭河流域一次致洪暴雨过程的中尺度滤波分析   总被引:4,自引:3,他引:1  
段昌辉  武麦凤 《气象科学》2012,32(1):110-117
利用常规高空观测资料和NCEP/NCAR 1°×1°的再分析资料以及25点低通滤波技术,对2003年8月28—29日发生在渭河流域的一次致洪暴雨进行了中尺度分析和探讨,分析出中尺度环流演变特征,总结了渭河流域致洪暴雨的概念模型,认为这次暴雨过程中在以西南气流为主的平均气流场上隐藏着尺度较中尺度平均流场小得多的涡旋,其移动方向和发展程度决定了强降水落区及其强度;高空西风风速脉动与低层南风风速脉动耦合形成了中尺度次级环流圈,其上升支为强降水提供了足够的动力抬升机制;而850 hPa低空急流、700 hPa中尺度低涡、南风脉动以及高空西风风速脉动等条件的合理配置是中尺度次级环流形成的必备因素;地面中尺度辐合线是本次暴雨的触发机制。  相似文献   
903.
利用常规气象资料分析了2009年早春苏南地区连阴雨期间的降水特点和环流形势特征。分析表明,此次连阴雨过程具有持续时间特别长、降水量特别多、最高气温偏低、雷暴天气频发等特点。连阴雨期间,欧亚上空高层中高纬环流经历贝湖低槽型、阻塞型和一槽一脊型3个阶段,亚洲中纬度地区多短波槽东移,保证了连阴雨天气的冷空气来源。孟加拉湾南支槽活跃,西太平洋副高偏北,从南海和菲律宾海经副高外围气流的水汽输送是此次连阴雨天气的主要水汽来源。由于冷暖空气在长江下游持续的相互作用,造成了苏南地区长达21天的阴雨天气。  相似文献   
904.
山西省夏季降水与赤道东太平洋海温关系初探   总被引:2,自引:0,他引:2  
利用山西省58个台站1960-2009年有观测记录的50a夏季降水资料和NCEP/NCAR逐月再分析位势高度场、NOAA逐月海温场资料,研究了山西省旱、涝年大气环流特征差异,并进一步讨论了山西省夏季降水异常与赤道东太平洋(Nino区)海温异常的关系。研究结果表明:山西省夏季降水异常年从前期春季到同期夏季,欧亚中高纬度500hPa位势高度的大气环流存在异常,尤其是乌拉尔山高压脊、贝加尔湖低槽及西太平洋副热带高压等大尺度环流系统都有明显的变化;850hPa风场上蒙古气旋南部纬向风的异常,以及我国东部到华北地区经向风(东亚夏季风)的异常,是直接影响山西省夏季降水的重要环流因子;赤道东太平洋秘鲁冷水舌和太平洋东岸暖水舌均是山西省夏季降水的敏感区,Nino区域前期海温异常对山西省夏季降水有显著的影响,即Nino区域前期海温偏低有利于山西省夏季降水偏多。  相似文献   
905.
Hadley环流强度与我国中东部气温的相关分析   总被引:1,自引:0,他引:1  
利用NCEP/NCAR再分析月平均风场资料和国家气候中心提供的中国160个气象站的月平均气温资料,用质量流函数计算方法描述平均经圈环流,用环流中心值大小表征其强度,分析Hadley环流强度1951--2010年的趋势变化及其与我国中东部气温的关系。结果表明:1)质量流函数能很好地表征平均经圈环流的特征,且环流中心值大小能形象地反映环流强度。2)近60a来,冬季北半球Hadley环流强度呈线性增强的趋势;夏季南半球Hadley环流在20世纪80年代初发生了由减弱趋势转变为显著增强趋势的年代际转折。3)我国中东部大部分地区气温的年代际变化能很好地被Hadley环流强度变化所解释,二者基本呈正相关关系,但显著相关区域随季节变化有所不同。  相似文献   
906.
The distribution of hydrography and circulation in the eastern tropical Indian Ocean(ETIO) during April-May 2011 were analyzed using cruise observations,satellite observations,and historic hydrographic data.It was observed that warm water(28℃) occupies the upper 50-m layer in the ETIO.Low-salinity surface water was observed at the mouth of the Bay of Bengal(BOB),which further extends to the Arabian Sea and off Sumatra via the Sri Lanka coast and the eastern bay mouth.Arabian Sea high-salinity water(ASHSW) is carried eastward along the equator to around 90°E by the equatorial undercurrent(EUC).It also runs south of Sri Lanka(north to 3°N) and in the western bay mouth(west to 87°E) but is much shallower than its counterpart at the equator.It is suggested to be the residual of the ASHSW,which intrudes into the BOB during the preceding southwest monsoon.Our results also show that,in the south of Sri Lanka,just below this subsurface high-salinity water,very-low-salinity water(about 34.8) occurs at depths of 100-200 m.Further analysis suggests that this low-salinity water comes from the BOB.  相似文献   
907.
基于湖南汛期区域持续性暴雨典型环流分型,利用1961—2016年NCEP/NCAR再分析资料和异常度方法对湖南6月区域持续性暴雨环流型进行客观识别,并结合动力和水汽输送条件,确定湖南6月区域持续性暴雨强信号并客观量化表征,建立湖南6月区域持续性暴雨预报定量化概念模型。结果表明:43次历史区域持续性暴雨过程的回报准确率达到81%,2017—2018年3次区域持续暴雨过程试报准确率为2/3,说明该概念模型有一定预报能力,能为湖南暴雨预报业务服务提供技术支持。将该概念模型与各类模式预报产品相结合,还可开展区域持续性暴雨的中期和延伸期预报。  相似文献   
908.
Using the monthly NCEP-NCAR reanalysis dataset, the monthly temperature and precipitation at surface stations of China, and the MM5 model, we examine impacts of vegetation cover changes in western China on the interdecadal variability of the summer climate over northwestern China during the past 30 years. It is found that the summer atmospheric circulation, surface air temperature, and rainfall in the 1990s were different from those in the 1970s over northwestern China, with generally more rainfall and higher temperatures in the 1990s. Associated with these changes, an anomalous wave train appears in the lower troposphere at the midlatitudes of East Asia and the low-pressure system to the north of the Tibetan Plateau is weaker. Meanwhile, the South Asian high in the upper troposphere is also located more eastward. Numerical experiments show that change of vegetation cover in western China generally forces anomalous circulations and temperatures and rainfall over these regions. This consistency between the observations and simulations implies that the interdecadal variability of the summer climate over northwestern China between the 1990s and 1970s may result from a change of vegetation cover over western China.  相似文献   
909.
Thermal convective precipitation (TCP) often occurs over mainland China in summer when the area is dominated by the western Pacific subtropical high (WPSH). It is well known that the WPSH often brings about large scale subsidence, then why could deep moist convection occur and where does the water vapor come from? In this paper, a deep convective precipitation case that happened on 2 August 2003 is studied in order to address these two questions. First, the characteristics of the TCP event are analyzed using the Tropical Rainfall Measuring Mission (TRMM) satellite data, automatic weather station observations, and the data from the US National Centers for Environmental Prediction (NCEP). Second, water vapor sources are identified through examining surface evaporation, water vapor advection, and water vapor flux divergence calculated by using a regionally averaged water vapor budget equation. Furthermore, using an Advanced Regional Eta-coordinate Model (AREM), contributions of sensible and latent heat fluxes to the TCP are compared through four sensitivity experiments. The results show that in the regions controlled by the WPSH, surface temperature rises rapidly after sunrise. Upon receiving enough sensible heat, the air goes up and leads to convergence in the lower atmosphere. Then the water vapor assembled from the surroundings and the ground surface is transported to the upper levels, and a favorable environment for the TCP forms. A model data diagnosis indicates that about half of precipitable water comes from the convergence of horizontal fluxes of water vapor, and the other half from surface evaporation, while little is from advection. Additional sensitivity experiments prove that both sensible and latent heating are essential for the onset of the TCP. The sensible heat flux triggers thermodynamic ascending motion, and the latent heat flux provides water vapor, but the contribution to TCP from the latter is a little smaller than that from the former.  相似文献   
910.
Based on the NCEP DOE AMIP II daily reanalysis data (1979{2005), the evolution of the East Asia/Pacific(EAP) teleconnection pattern during the pre-rainy period of South China is studied on the medium-range time scale. It is found that positive and negative EAP patterns share a similar generation process. In the middle and upper troposphere, Rossby wave packets emanating from the northeast Atlantic or Europe propagate toward East Asia along the Eurasian continent waveguide and finally give rise to the three anomaly centers of the EAP pattern over East Asia. Among the three anomaly centers, the western Pacific subtropical center appears the latest. Rossby wave packets propagate from the high latitude anomaly center toward the mid-latitude and the subtropical ones. The enhancement and maintenance of the subtropical anomaly center is closely associated with the subtropical jet waveguide and the incoming Rossby wave packets from the upstream. In the lower troposphere, Rossby wave packets emanate from the subtropical Asia toward East Asia. Positive and negative EAP patterns could not be regarded as "mirrors" to each other with simply re- versed phase. For the positive pattern, the positive height anomaly center around the Scandinavia Peninsula keeps its strength and position during the mature period, and the Rossby wave packets thus propagate persistently toward East Asia, facilitating a longer mature time of the positive pattern. As for the formation of the negative EAP pattern, however, the incoming Rossby wave energy from the upstream contributes to both the enhancement and southeastward movement of the negative anomaly belt from the Yenisei River to the Bering Strait and the positive anomaly center around Mongolia. At the peak time, the two anomlous circulations are evolved into the Northeast Asia and the mid-latitude anomaly centers of the negative pattern, respectively. The energy dispersion of Rossby wave packets is relatively fast due to the predominant zonal circulation in the extratropics, causing a shorter mature period of the negative pattern. During the pre-rainy period of South China, the prevalence of the EAP pattern signiˉcantly affects the rainfall over the region south of the Yangtze River. The positive (negative) EAP pattern tends to causepositive (negative) precipitation anomalies in that region. This is di?erent from the earlier research findingsbased on monthly mean data.  相似文献   
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