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《Journal of Tropical Meteorology》 2004-06
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YAO Yu 1,2 ,YAN Hua-sheng ,2 CHENG Jian-gang 3(1.Kunming Meteorological Observatory,Kunming 650034,China;2.Institute of Resource and Earth Science,Yunnan University,Kunming 650091,China;3.Yunnan Meteorological bureau,Kunming 650034,China;)  
This paper sets up standard multiple regression equations by using five subtropical high indexes and the rainfall data from 160 sampling stations in China from June to August. From the discussion of the distribution and change of the partial regression coefficients of five subtropical high indexes and the coefficient of multiple correlation coefficient of every equation, we study the composite influence of the location, shape, area and intensity that the subtropical high indexes reflect on the rainfall of the main raining period of China, and besides, the difference of the influence in season and region. The outcome shows that the north boundary index and ridge line index of subtropical high are related to the change of the location of main rain belt, and the western ridge point index of subtropical high is associated with the amount of the rain in most areas of China. According to the methods used in the work, the area index and the intensity index show the reverse effect on the rainfall. At last, we discuss the fitting ability of the subtropical high indexes to the rainfall of the main raining periods in China and find that this ability turns to be better in July than June and August. As far as the region is concerned, the fitting ability will be more effective for the south or east part of China than the north and west part.
【Fund】: 云南省重点基金项目2003D0014Z;; 国家自然科学基金项目40065001共同资助
【CateGory Index】: P461
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