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Water-vapor source shift of Xinjiang region during the recent twenty years
引用本文:Dai Xingang,Li Weijing,Ma Zhuguo and Wang Ping (Key Laboratory of Regional Climate-Environment for Temperate East Asia,Institute of Atmospheric Physics,Chinese Academy of Sciences,Beijing 100029,China, Laboratory for Climate Change,Chinese Meteorological Administration,Beijing 100081,China). Water-vapor source shift of Xinjiang region during the recent twenty years[J]. 自然科学进展(英文版), 2007, 17(5): 569-575
作者姓名:Dai Xingang  Li Weijing  Ma Zhuguo and Wang Ping (Key Laboratory of Regional Climate-Environment for Temperate East Asia  Institute of Atmospheric Physics  Chinese Academy of Sciences  Beijing 100029  China   Laboratory for Climate Change  Chinese Meteorological Administration  Beijing 100081  China)
作者单位:Key Laboratory of Regional Climate-Environment for Temperate East Asia,Institute of Atmospheric Physics,Chinese Academy of Sciences,Beijing 100029,China; Laboratory for Climate Change,Chinese Meteorological Administration,Beijing 100081,China
摘    要:The aim of this paper is to investigate the climate water-vapor sources of Xinjiang region and their shifts during the past 20 years. First, the principle and steps are roughly regulated to seek the water-vapor sources. Second, the climate stationary water-vapor transport in troposphere is calculated to distinguish where the water vapor comes from by ERA-40 reanalysis. In addition, the collocation between the transport and the atmospheric column water vapor content is analyzed. The results show that the major vapor comes from the west side of Xinjiang for mid-month of seasons, apart from July while the water vapor comes from the north or northwest direction. The water vapor sources are different for different seasons, for example, the Caspian Sea and Mediterranean are the sources in January and April, the North Atlantic and the Arctic sea in July, and the Black Sea and Caspian Sea in October, respectively. In recent ten years more water vapor above Xinjiang comes from the high latitudes and the Arctic sea with global warming, and less from Mediterranean in comparison with the case of 1973—1986. In fact, the air over subtropics becomes dry and the anomalous water vapor transport direction turns to west or southwest during 1987—2000. By contrast, the air over middle and high latitudes is warmer and wetter than 14 years ago.


Water-vapor source shift of Xinjiang region during the recent twenty years
Dai Xingang,Li Weijing,Ma Zhuguo,Wang Ping. Water-vapor source shift of Xinjiang region during the recent twenty years[J]. Progress in Natural Science, 2007, 17(5): 569-575
Authors:Dai Xingang  Li Weijing  Ma Zhuguo  Wang Ping
Abstract:The aim of this paper is to investigate the climate water-vapor sources of Xinjiang region and their shifts during the past 20 years. First, the principle and steps are roughly regulated to seek the water-vapor sources. Second, the climate stationary water-vapor transport in troposphere is calculated to distinguish where the water vapor comes from by ERA-40 reanalysis. In addition, the collocation between the transport and the atmospheric column water vapor content is analyzed. The results show that the major vapor comes from the west side of Xinjiang for mid-month of seasons, apart from July while the water vapor comes from the north or northwest direction. The water vapor sources are different for different seasons, for example, the Caspian Sea and Mediterranean are the sources in January and April, the North Atlantic and the Arctic sea in July, and the Black Sea and Caspian Sea in October, respectively. In recent ten years more water vapor above Xinjiang comes from the high latitudes and the Arctic sea with global warming, and less from Mediterranean in comparison with the case of 1973-1986. In fact, the air over subtropics becomes dry and the anomalous water vapor transport direction turns to west or southwest during 1987-2000. By contrast, the air over middle and high latitudes is warmer and wetter than 14 years ago.
Keywords:global warming  water-vapor source  water-vapor transport  precipitable water  Xinjiang climate  inter-decadal change
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