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THE STUDY ON LATENT AND SENSIBLE HEAT FLUX OVER MIRE IN THE SANJIANG PLAIN
作者姓名:JIA Zhi-Jun ~    SONG Chang-Chun~  SUN Li~  
作者单位:1. Northeast Institute of Geography and Agroecology,Chinese Academy of Sciences,Changchun Jilin 130012,P.R. China; 2. Graduate school of Chinese Academy of Sciences,Beijing 100049,P.R. China
基金项目:中国科学院资助项目;中国科学院知识创新工程项目
摘    要:Energy exchange is one of the most importantprocesses in wetland ecosystems,because it has agreat influence on temperature,water transport,plantgrowth,productivityetc.(Dennison and Berry,1989).On small scales,understanding of surface en-ergy exchange is n…

关 键 词:热流  湿地  净辐射能量  风速  气温
文章编号:1672-5948(2006)01-013-08
收稿时间:2005-11-30
修稿时间:2006-01-15

THE STUDY ON LATENT AND SENSIBLE HEAT FLUX OVER MIRE IN THE SANJIANG PLAIN
JIA Zhi-Jun ,,SONG Chang-Chun ,SUN Li ,.THE STUDY ON LATENT AND SENSIBLE HEAT FLUX OVER MIRE IN THE SANJIANG PLAIN[J].Wetland Science,2006,4(1):13-20.
Authors:JIA Zhi-Jun  SONG Chang-Chun  SUN Li
Abstract:Understanding how surface energy fluxes respond to environmental variables and how their components vary on daily and seasonal temporal scales are critical for understanding the ecological process of wetland ecosystem. In view of the fact that studies on surface energy flux over mire in China have been very limited, we have initiated a long-term latent and sensible heat flux (two main components of the surface energy balance) observation over mire in the Sanjiang Plain from June to October in 2004 with the eddy covariance technique. Results showed that the latent and sensible heat flux had large seasonal and diurnal variation during the period of measurement. Generally, latent heat flux between the mire wetland and the atmosphere reached the maximum value in June and then gradually decreased from June to October, whose daily mean fluxes were 9.83,8.00,7.33, 4.82 and 2.04 MJ/(m2·d), respectively. By comparison, sensible heat flux changed unnoticeably with season change from June to October, which were 1.47,0.88,1.75, 1.61,1.33 MJ/(m2·d) respectively. The diurnal variation of both latent and sensible heat flux varied noticeably within a day. After the sunrise, the latent and sensible heat flux increased and reached the maximum at noon (11:00-13:00). Then they decreased gradually and reached the minimum value during the nighttime. The patterns of temporal variation in latent and sensible heat flux were significantly controlled by environmental factors. The latent heat flux was linearly dependent on net radiation and increased with increasing vapour pressure deficit until the vapour pressure deficit surpassed 11 hPa. Wind speed effect on latent heat flux was more complicated and, in general, showed a positive correlation between them in daytime. The sensible heat flux was controlled mainly by air temperature difference between the land surface and the overlying air. However, when the temperature difference was larger than 0.3 ℃, it had no effect on the sensible heat flux. The study showed up the temporal variation of latent and sensible heat flux and how the environmental factors affected them.
Keywords:mire  latent and sensible heat flux  net radiation  vapour pressure deficit  wind speed  air temperature difference CLC number:P461 Document code:A Article ID:1672-5948(2006)01-013-08
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