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The Influence of Large-Scale Circulation on the Summer Hydrological Cycle in the Haihe River Basin of China

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【作者】 欧廷海柳艳香陈德亮David RAYNER张强高歌向卫国

【Author】 OU Tinghai 1,2, LIU Yanxiang 3, CHEN Deliang 2, David RAYNER 2 , ZHANG Qiang 3, GAO Ge 2,3, and XIANG Weiguo 41 School of Geology, Beijing Normal University, Beijing 100875, China 2 Department of Earth Sciences, University of Gothenburg, Gteborg 40530, Sweden 3 National Climate Center, China Meteorological Administration, Beijing 100081, China 4 College of Atmospheric Sciences, Chengdu University of Information Science & Technology, Chengdu 610225, China

【机构】 School of Geology,Beijing Normal UniversityDepartment of Earth Sciences,University of GothenburgNational Climate Center,China Meteorological AdministrationCollege of Atmospheric Sciences,Chengdu University of Information Science & Technology

【摘要】 In this study, we focus on changes in three important components of the hydrological-cycle in the Haihe River basin (HRB) during 1957-2005: precipitation (Prep), actual evaportranspiration (ETa), and pan evaporation (PE)-a measure of potential evaporation. The changes in these components have been evaluated in relation to changes in the East Asian summer monsoon. Summer Prep for the whole basin has decreased significantly during 1957-2005. Recent weakening of the convergence of the integrated water vapor flux, in combination with a change from cyclonic-like large-scale circulation conditions to anti-cyclonic-like conditions, led to the decrease in the summer Prep in the HRB. ETa is positively correlated with Prep on the interannual timescale. On longer timescales, however, ETa is less dependent on Prep or the large-scale circulation. We found negative trends in ETa when the ERA40 reanalysis data were used, but positive trends in ETa when the NCEP/NCAR reanalysis data were used. PE declined during the period 1957-2001. The declining of PE could be explained by a combination of declining solar radiation and declining surface wind. However, the declining solar radiation may itself be related to the weakening winds, due to weaker dispersion of pollution. If so, the downward trend of PE may be mainly caused by weakening winds.

【Abstract】 In this study, we focus on changes in three important components of the hydrological-cycle in the Haihe River basin (HRB) during 1957–2005: precipitation (Prep), actual evaportranspiration (ETa), and pan evaporation (PE)–a measure of potential evaporation. The changes in these components have been evaluated in relation to changes in the East Asian summer monsoon. Summer Prep for the whole basin has decreased significantly during 1957–2005. Recent weakening of the convergence of the integrated water vapor flux, in combination with a change from cyclonic-like large-scale circulation conditions to anti-cyclonic-like conditions, led to the decrease in the summer Prep in the HRB. ETa is positively correlated with Prep on the interannual timescale. On longer timescales, however, ETa is less dependent on Prep or the large-scale circulation. We found negative trends in ETa when the ERA40 reanalysis data were used, but positive trends in ETa when the NCEP/NCAR reanalysis data were used. PE declined during the period 1957–2001. The declining of PE could be explained by a combination of declining solar radiation and declining surface wind. However, the declining solar radiation may itself be related to the weakening winds, due to weaker dispersion of pollution. If so, the downward trend of PE may be mainly caused by weakening winds.

【基金】 Supported by the National Basic Research and Development (973) Program of China (2006CB403404);National Natural Science Foundation of China (40675038)
  • 【文献出处】 Acta Meteorologica Sinica ,气象学报(英文版) , 编辑部邮箱 ,2011年04期
  • 【分类号】P434;P339
  • 【被引频次】1
  • 【下载频次】66
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