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Preliminary study on land surface characteristics over Huaihe River Basin
作者姓名:LIN Zhaohui  YANG Xiaosong  GUO Yufu
作者单位:LASG. Institute of Atmospheric Physics. Chinese Academy of Sciences. Beijing 100029. China,LASG. Institute of Atmospheric Physics. Chinese Academy of Sciences. Beijing 100029. China,LASG. Institute of Atmospheric Physics. Chinese Academy of Sciences. Beijing 100029. China
摘    要:The analysis of the flux observation dada from the Huaihe River Basin Experiment (HUBEX) shows that, in semi-humid monsoon regions, latent heat flux is as important as sensible heat flux in most situations. Moreover, it can even dominate the sensible heat flux in cropland and paddy field. This is distinct from that for arid and semi-arid regions where the sensible heat flux is dominant. Under clear sky conditions, the soil temperatures in different vertical layers all exhibit certain diurnal variations, and the magnitude decreases with depth to less than 1°C at a depth of 60 cm. This depth is considered as the transition layer for the soil moisture variation. On the other hand, the vertical profile of soil water content varies with the soil texture and even weather conditions, and the layer with maximum soil water content can also be found in Jiangji station during June 1998.

关 键 词:Huaihe  River  Basin    land  surface  characteristics    soil  water  content    sensible  heat  flux    latent  heat  flux.

Preliminary study on land surface characteristics over Huaihe River Basin
LIN Zhaohui,YANG Xiaosong,GUO Yufu.Preliminary study on land surface characteristics over Huaihe River Basin[J].Progress in Natural Science,2002,12(2):120-125.
Authors:Lin Zhaohui  Yang Xiaosong  Guo Yufu
Institution:LASG, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029, China
Abstract:The analysis of the flux observation dada from the Huaihe River Basin Experiment (HUBEX) shows that, in semi-humid monsoon regions, latent heat flux is as important as sensible heat flux in most situations. Moreover, it can even dominate the sensible heat flux in cropland and paddy field. This is distinct from that for arid and semi-arid regions where the sensible heat flux is dominant. Under clear sky conditions, the soil temperatures in different vertical layers all exhibit certain diurnal variations, and the magnitude decreases with depth to less than 1°C at a depth of 60 cm. This depth is considered as the transition layer for the soil moisture variation. On the other hand, the vertical profile of soil water content varies with the soil texture and even weather conditions, and the layer with maximum soil water content can also be found in Jiangji station during June 1998.
Keywords:Huaihe River Basin  land surface characteristics  soil water content  sensible heat flux  latent heat flux  
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