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The Variation of Extreme Temperature and Precipitation in Shandong Province during 1961-2008 被引量:5
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作者 薛德强 王兴堂 《Meteorological and Environmental Research》 CAS 2010年第5期51-57,共7页
We drew on data of daily average temperature,average maximum temperature,average minimum temperature and precipitation from 78 meteorological stations during 1961-2008 of Shandong Province,analyzed the variation of ex... We drew on data of daily average temperature,average maximum temperature,average minimum temperature and precipitation from 78 meteorological stations during 1961-2008 of Shandong Province,analyzed the variation of extreme temperature and precipitation events.The results showed that although extreme cold days decreased by 0.23 d/a on average,after the average temperature steadily passed 10 ℃ in spring,it would still appear 1-2 days of frost,wheat and fruit trees would still suffer frozen injury every year in the central Shandong and the inland of Shandong Peninsula.Although the number of annual extreme hot days has an increasing trend obviously in Shandong and increased by 0.19 days a year.After 2000,aimed at the days of daily maximum temperature ≥ 35 ℃,the mean value and standard deviation of daily maximum temperature in summer decreased comparing with the normal year in West Shandong,and decreased by 1-3 days.In recent 50 years,the extreme precipitation trend increased,but not statistically significant.The number of light rain days has a decreasing trend and decreased by 0.17 days every year,in contrast,the frequency of downpour has an increasing trend. 展开更多
关键词 Extreme temperature Extreme precipitation Late frost the days of maximum temperature Shandong Province China
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A STUDY ON RESPONSE OF PRECIPITATION IN CHINA TO MONSOON INTRASEASONAL OSCILLATION 被引量:3
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作者 姚素香 黄乾 +1 位作者 张耀存 况雪源 《Journal of Tropical Meteorology》 SCIE 2012年第4期503-511,共9页
Temporal and spatial evolution characteristics of the 30-60 day oscillation (intraseasonal oscillation, ISO) of summer rainfall in China and the effects of East Asian monsoon on the rainfall ISO are analyzed in this p... Temporal and spatial evolution characteristics of the 30-60 day oscillation (intraseasonal oscillation, ISO) of summer rainfall in China and the effects of East Asian monsoon on the rainfall ISO are analyzed in this paper. Results show that the annual and decadal variations of the oscillation exist between 1960 and 2008, and the intensity is weakest in the late 1970s and early 1980s. In the typical strong years of the rainfall ISO obtained from empirical orthogonal functions (EOF mode 1), an anticyclone is in northwestern Pacific and a cyclone is in the east of China. In the typical weak years, the wind ISO is much weaker. The low-frequency zonal wind and water vapor transport from the low latitudes to mid-latitudes in the typical strong years, and the oscillation strength of diabatic heating is much stronger than that in the weak years of the rainfall ISO. The anomaly characteristics of the rainfall ISO show anti-phases between the Yangtze River basin and south of China. As for the typical strong years of the rainfall ISO in the Yangtze River basin (EOF mode 2), the main oscillation center of water vapor is in the east of China (20-30°N, 110-130°E). In the peak (break) phase of the rainfall oscillation, a low-frequency cyclone (anticyclone) is in the Yangtze River basin and an anticyclone (cyclone) is near Taiwan Island. In addition, the peak rainfall corresponds to the heat source in the Yangtze River basin and the heat sink in the Qinghai-Tibet Plateau. As for the typical strong years of the rainfall ISO in the south of China, the main oscillation center of water vapor is south of 20°N. In the peak (break) phase of the rainfall ISO, a low-frequency cyclone (anticyclone) is in the south of China and an anticyclone (cyclone) is in the Philippines. The peak rainfall corresponds to the heat source in the south of China and the South China Sea, and the heat sink in the west of Indochina. 展开更多
关键词 precipitation MONSOON 30-60 day oscillation
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太湖流域设计暴雨的时空分布计算 被引量:1
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作者 胡莎 戴贤波 +1 位作者 刘俊 赵辉 《水资源与水工程学报》 2016年第5期70-74,共5页
利用太湖流域1951-2010年的雨量资料,从平均暴雨日数和最大30 d雨量两个方面,分析流域暴雨时空分布特性。太湖流域多年平均暴雨日数、多年平均最大30 d雨量在时间分布上都呈增加趋势但不显著,在空间分布上山丘区均大于平原区。通过对流... 利用太湖流域1951-2010年的雨量资料,从平均暴雨日数和最大30 d雨量两个方面,分析流域暴雨时空分布特性。太湖流域多年平均暴雨日数、多年平均最大30 d雨量在时间分布上都呈增加趋势但不显著,在空间分布上山丘区均大于平原区。通过对流域和分区时段雨量的重现期进行统计分析,提出两种可能的流域设计暴雨空间组合方案及反映太湖流域暴雨特点的设计暴雨时空分布计算方法,结果表明本文提出的针对太湖暴雨特点设计的暴雨空间组合方案及计算方法合理。 展开更多
关键词 设计暴雨 空间组合 最大30 d雨量 平均暴雨日数 太湖流域
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