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《Plateau Meteorology》 2004-04
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Analyses of the Impacts of Upper-Level Temperature and HeightAnomalies on Surface Air Temperature and Precipitation in China

QIAN Yong-fu,ZHOU Ning-fang,BI Yun(Institute of Severe Weather and Climate, Nanjing University, Nanjing 210093, China)  
The time-lag and the spatial coupling relationships between the anomalies of the monthly mean 300 hPa temperature (hereafter the upper level temperature) and the 100 hPa height (hereafter the upper level height) fields taken from the NCEP/NCAR 1958_1997 reanalysis data and the anomalies of Chinese monthly mean surface air temperature and monthly precipitation observed at the 160 stations are diagnosed by use of the SVD technique. The influences of the spatial and temporal variations of the upper-level temperature and height anomalies on anomalies of Chinese temperature and precipitation are carefully analyzed. It is found that the integral spatial distribution patterns of the upper-level temperature and height anomalies have important impacts on China′s temperature and precipitation anomalies, the upper-level anomaly fields in different regions are responsible to anomalies of surface temperature and precipitation in different areas in China. The Iranian and the Qinghai-Xizang Plateaus and the low-latitude zone in the tropics and subtropics to the south of the Plateau are the key regions of the upper level fields. The influences of the anomaly of the upper-level temperature(height) are of evident interannual(interdecadal) on the temperature and precipitation in China. The Yangtze River basin, the Yellow River valley, South China and the south-of-the-Yangtze-River district are the most influenced areas by the upper-level temperature and height anomalies.
【Fund】: 国家自然科学基金面上项目"南亚高压与亚洲季风相互作用规律及其机制研究"(40175021);; 重点项目"江淮梅雨的年际和年代际变化及其机理研究"(40233037)共同资助
【CateGory Index】: P423
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