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中国北方近50年潜在蒸发的变化 被引量:127

Changes of Potential Evaporation in Northern China over the Past 50 Years
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摘要 利用彭曼-蒙梯斯公式和常规气象资料计算中国北方地区潜在蒸发(也称蒸发力)变化,分析实测蒸发皿蒸发的变化,结果表明:自20世纪50年代以来,潜在蒸发和蒸发皿蒸发呈波动下降趋势。日照百分率、风速下降和湿度增加影响了潜在蒸散和蒸发皿蒸发量的变化。从能量观点来说,太阳总辐射的下降是潜在蒸发和蒸发皿蒸发减小的主要原因之一,大气湿度增加和人类对于能源消耗的增加导致到达地面的太阳总辐射下降。因太阳总辐射的下降引起潜在蒸发的减小量约占总潜在蒸发减小量的78%左右。 The authors estimated the changes of potential evaporation in past 50 years (1950-2000) by using the Penman-Monteith model and also northern analyzed China over the the observation pan evaporation data in the same regions in this paper.The results showed that the potential evaporation and pan evaporation amount had a same decreasing tendency in recent 50 years.The main reasons for the decrease of potential evaporation and pan evaporation amount were due to the decrease of sunshine percentage and wind speed and increase of air humidity during this period of time.From the viewpoint of the energy,the solar radiation reduction was also one of the main reasons for evaporation decrease.The present research indicated that the air humidity increase and the increase in energy resources consumption owing to anthropogenic activities were the two important factors affecting total solar radiation reduction.According to the estimation by Penman-Monteith model the decreased amount of potential evaporation induced by reduction of solar radiation reaching the earths surface accounted for 78% of the total amount of evaporation decreased.
作者 谢贤群 王菱
出处 《自然资源学报》 CSCD 北大核心 2007年第5期683-691,共9页 Journal of Natural Resources
基金 中国科学院禹城农业生态试验站资助项目。
关键词 潜在蒸发 中国北方地区 变化趋势 原因 potential evaporation northern China changing tendency cause
作者简介 谢贤群(1938-),男,江苏苏州人,研究员,主要从事农田生态系统能量、物质循环和农田气候研究。E-mail:xiexq@igsnrr.ac.cn
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参考文献18

  • 1Peterson T C,Golubey V S,Grolsman P Ya.Evaporation losing its strength[J].Nature,1995,377:687-688.
  • 2Brutsacrt W,Parlange M B.Hydrologic cycle explains the evaporation paradox[J].Nature,1998,396:30.
  • 3Cohen S,Ianetz A,Stanhill G.Evaporative climate changes at Bet Dagan,Israel,1964-1998[J].Agric.For.Meteorol.,2002,111:83-91.
  • 4Michael L Rodcrick,Graham D Farquhar.The cause of decreased pan evaporation over the past 50 years[J].Science,2002,298:1410-1411.
  • 5Chattopadhyay N,Hulme M.Evaporation and potential evapotranspiration in India under conditions of recent and future climate change[J].Agric.For.Meteorol.,1997,87,55-73.
  • 6左大康 王懿贤 陈建绥.中国地区太阳总辐射的空间分布特征.气象学报,1963,33(1):78-96.
  • 7Penman H C.Natural evapotranspiration from open water,bare soil and grass[J].Proc.R.Soc.Lond.Ser.A,1948,193:120-145.
  • 8Allen R G,Pereira L S,Raes D,et al.Crop evapotranspiration guidelines for computing crop water requirements[R].Irrigation and Drainage Paper No.56.FAO,Rome,Italy,1998.17-27.
  • 9李晓文,李维亮,周秀骥.中国近30年太阳辐射状况研究[J].应用气象学报,1998,9(1):24-31. 被引量:232
  • 10Stanhill G.Long-term trends and spatial variation of solar Irradiances in Ireland[J].Int.J.Climato.,1998,(18):1015-1030.

二级参考文献29

  • 1邱金桓.从全波段太阳直射辐射确定大气气溶胶光学厚度 I:理论[J].大气科学,1995,19(4):385-394. 被引量:42
  • 2李晓文,Acta Meteorol Sin,1995年,9卷,1期,57页
  • 3王炳忠,太阳能学报,1992年,13卷,79页
  • 4杨东贞,应用气象学报
  • 5Karl T R,Geophys Res Lett,2000年,27卷,719页
  • 6Hansen J,PNAS,2000年,97卷,18期,9875页
  • 7Beer J,Quat Sci Rev,2000年,19卷,1/5期,403页
  • 8Levitus S,Science,2000年,287卷,5461期,2225页
  • 9科技部农村与社会发展司(译),针对全球气候条约的科学见解,2000年
  • 10Linden E,The bigmelt down Asthetemperaturerises in the Arcticits endsachill around the planet,2000年

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